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据中国地震台网测定:2022 年 06 月 01 日 17 时 00 分在四川雅安市芦山县境内(北纬30.38 度,东经 102...
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个人简历

吴立新,教授,博导,国际欧亚科学院院士,九三社员和中共党员,江西宜春人,1966年11月生。教育部长江学者特聘教授(2004),全国百篇优秀博士学位论文(2000)和国家杰出青年基金(2005)获得者,国务院学位委员会第七届测绘学科评议组成员兼召集人(2015),中南大学测绘科学与技术学科带头人。为科技部参加GEO专家组成员,美国科学促进会(AAAS)会员,中国煤炭学会资深会员、中国煤炭学会矿山测量专业委员会名誉委员。

长期从事矿山测量、地球空间信息、地灾感知认知研究,是我国数字矿山的倡导者和国际遥感-岩石力学的引领者。主要研究方向:“三下”采煤与开采沉陷控制、三维地学建模与应用、数字矿山与矿区遥感、遥感-岩石力学与地应力遥感等。主持完成国家自然科学基金重点/面上项目、国家973与863课题、省部重大/重点课题等项目30余项;获国家科技进步二等奖2项、省部级科技一等奖5项。出版专著10部(其中1部获全国高校优秀学术著作奖、1部获国家新闻出版署原创出版工程奖)、译著1部、教材3部;发表论文400余篇(SCI收录50余篇、EI收录160余篇);获中国发明专利8项、实用新型2项、国家软件登记13项。

曾任IEEE地学与遥感学会遥感应用委员会两届共同主席(2006-2009)、国际地球观测联盟(GEO)用户委员会委员(2008-2012)、国际摄影测量与遥感学会(ISPRS)WebGIS工作组共同组长(2010-2014)。现任GEO基础设施建设局成员、能源-环境工作组副组长、煤炭-环境工作组组长,ISPRS大气环境遥感工作组组长,国际数字地球学会(ISDE)中国国家委员会委员;以及中国地震学会空间对地观测委员会副主任,中国有色金属学会矿山信息化智能化专业委员会副主任,中国地理信息产业协会常务理事、GIS理论与方法委员会副主任,中国煤炭学会煤矿开采损害技术鉴定委员会委员,中国遥感应用协会理事,中国地质学会地质灾害研究分会委员,中国煤炭技术委员会环境保护专家委员会委员,中国岩石力学与工程学会深层岩石力学专业委员会委员,神华集团建设数字矿山专家委员会委员等。兼任《地理与地理信息科学》主编,《科技导报》常务编委等。


教育经历倒序

[1] 1994/09 - 1997/06,中国矿业大学(北京校区),大地测量学与测量工程,工学博士

[2] 1988/09 - 1991/03,中国矿业大学北京研究生部,大地测量学与测量工程,工学硕士

[3] 1984/09 - 1988/06,中国矿业学院物测系,矿山测量专业,工学学士


工作经历

[1] 2016.11-迄今,中南大学地球科学与信息物理学院教授,测绘学科带头人

[2] 2012/05 - 2016.11,中国矿业大学物联网(感知矿山)中心执行主任,测绘学科首席教授

[3] 2008/05 - 2012/04,北京师范大学985首席教授,民政部/教育部减灾与应急管理研究院空间所所长

[4] 2005/05 - 2008/04,东北大学长江学者特聘教授,测绘遥感与数字矿山研究所所长

[5] 2000/12 - 2005/04,中国矿业大学(北京),测绘与土地科学系副主任、教授

[6] 1996/12 - 2000/11,中国矿业大学(北京),测绘与土地科学系副教授

[7] 1994/01 - 1996/11,中国矿业大学(北京),测绘与土地科学系讲师

[8] 1991/03 - 1993/12,中国矿业大学(北京),测绘与土地科学系助教


社会兼职

(1)社会服务

《Geomatics, Natural Hazards and Risk》副主编(2021-)

《地理与地理信息科学》副主编(2003-)、主编(2016-)

《科技导报》编委(2006-2009)、常务编委(2010-)

国家人事部“653”工程煤矿测量领域首席科学家(2007-)

神华集团“建设神华数字矿山”专家委员会委员(2011-)

科技部“中国参加地球观测组织(GEO)专家组”成员(2013-)

国务院学位委员会测绘学科评议组召集人(2015-)

中国地震电磁卫星(CSES)任务国际科学家委员会委员(2016-)

(2)国际学术组织

[1] 美国科学促进会(AAAS)会员(2002-)

[2] IEEE地学与遥感学会(GARS)遥感应用委员会(UARS)合作主席(2005-2009)

[3] 国际地球观测联盟(GEO)用户接口委员会(UIC)委员(2006-2011)

[4] 国际摄影测量与遥感学会(ISPRS))WebGIS工作组(IV-WG5)合作组长(2012-2016)

[5] 国际地球观测联盟(GEO)基础设施局(GEO IIB)成员(2014-)

[6] 国际地球观测联盟(GEO)煤炭-环境工作组(GEO WGCE)组长(2014-)

[7] 国际地球观测联盟(GEO)能源-环境工作组(GEO WGEE)副组长(2014-)

[8] 国际摄影测量与遥感学会(ISPRS)大气环境遥感工作组(WG III-3)组长(2016-2020)

[9] 国际数字地球学会(ISDE))中国国家委员会委员(2017-)

(3)国内学术组织

[1] 中国煤炭学会青年工作委员委员兼秘书长(1997-2002)、副主任(2003-2010)

[2] 中国测绘学会矿山测量专业委员会委员(1997-2005)、副主任(2006-2017)

[3] 中国煤炭学会煤矿开采损害技术鉴定委员会委员(2000-)

[4] 中国煤炭学会矿山测量专业委员会委员(2001-2010),荣誉委员(2010-)

[5] 中国岩石力学与工程学会深层岩石力学专业委员会委员(2001-2005)

[6] 中国地理信息产业协会理事(2003-2010)、常务理事(2011-)

[7] 中国地理信息产业协会理论与方法委员会副主任(2004-)

[8] 中国遥感应用协会理事(2006-2008)、常务理事(2009-2014)

[9] 中国煤炭技术委员会环境保护专家委员会委员(2008-2012)

[10] 中国地震学会空间对地观测委员会委员(2008-2010)、副主任(2011-)

[11] 中国地质学会地质灾害研究分会委员(2012-)

[12] 中国地理信息产业协会地质矿产工作委员会副主任(2013-)

[13] 中国地理信息产业协会卫星应用委员会委员(2014-)

[14] 中国测绘学会卫星应用委员会委员(2014-)

[15] 中国有色金属学会矿山信息化智能化专业委员会副主任委员(2014-)


目前研究方向

[1] 协同观测与地灾感知认知

[2] 遥感-岩石力学与地应力遥感

[3] 三维地学建模与应用

[4] 城市地下空间资源整体评估

[5] 矿区遥感与数字矿山


团队成员

苗则朗副教授、陈必焰副教授、王威副教授、李佳博士、刘善军教授、包妮沙副教授、贺黎明副教授、郭甲腾副教授、马保东副教授、杨可明教授、许志华副教授、秦凯教授、余接情副教授


论文成果

(1) 刊物论文

[1] Wenfei Mao, Lixin Wu*, Ramesh P. Singh, Yuan Qi, Busheng Xie, Yingjia Liu, Yifan Ding, Zilong Zhou and Jia Lia. Progressive destabilization and triggering mechanism analysis using multiple data for Chamoli rockslide of 7 February 2021, Geomatics, Natural Hazards and Risk, 13:1, 35-53,2021

[2] Mao W F, Wu L*, Xu Y Y, Lu J C and Qi Y. Change in Diorite Microwave Dielectric Property at the Free End Upon Compressive Stress Application to the Other End. IEEE Transactions on Geoscience and Remote Sensing, Doi:10.1109/TGRS.2021.3125992, 2021

[3] Shi J, Yang Z*, Wu L, et al. Improving the Robustness of the MTI-Estimated Mining-Induced 3D Time-Series Displacements with a Logistic Model[J]. Remote Sensing, 2021, 13(18): 3782.

[4] Ting Xie, Biyan Chen*, Lixin Wu, Wujiao Dai, Cuilin Kuang, Zelang Miao. Detecting Seismo‐Ionospheric Anomalies Possibly Associated With the 2019 Ridgecrest (California) Earthquakes by GNSS, CSES, and Swarm Observations. Journal of Geophysical Research: Space Physics, 2021.

[5] Biyan Chen*, Wenkun Yu, Wei Wang, Zhetao Zhang, Wujiao Dai. A global assessment of precipitable water vapor derived from GNSS zenith tropospheric delays with ERA5, NCEP FNL, and NCEP GFS products. Earth and Space Science, 2021, 8(8).

[6] Sher Muhammad, Jia Li, Jakob F. Steiner, Finu Shrestha, Ghulam M. Shah, Etienne Berthier, Lei Guo, Li-xin Wu, Lide Tian. A holistic view of Shisper Glacier surge and outburst floods: from physical processes to downstream impacts. Geomatics, Natural Hazards and Risk. 2021, 12:1, 2755-2775

[7] Jia Li, Zhi-wei Li, Jun Hu, Li-xin Wu, Xin Li, Lei Guo, Zhuo Liu, Ze-lang Miao, Wei Wang, Jun-li Chen. Investigating the biases of TanDEM-X elevations over Qinghai–Tibet Plateau glaciers: impacting factors and potential effects on geodetic mass-balance measurements. Journal of Glaciology, 2021, 1-14. doi:10.1017/jog.2021.15, 2021/1/28

[8] 吴立新, 李佳, 苗则朗, 王威, 陈必焰, 李志伟, 戴吾蛟, 许文斌. 冰川流域孕灾环境及灾害的天空地协同智能监测模式与方向. 测绘学报, 2021, 50(8): 1109-1121

[9] 李建江,李佳,吴立新,汪赢政,郭磊. 基于高亚洲精细再分析数据模拟普若岗日冰原2012-2014年表面能量-物质平衡. 干旱区研究, 2021, 38(4): 919-929

[10] 徐燕春, 李佳, 吴立新, 郭磊, 徐浩栋. 基于SBAS-InSAR技术的长沙城区2017-2020年地表沉降监测. 海洋测绘, 2021

[11] Mao W F, Wu L X*, Liu S J and Qi Y. Microwave Emission of Rock Change with Compressive Stress: Experiments and Physics. PIERS 2019, December 2019, pp 1811-1818, Xiamen, China, 2020

[12] S. Chen#, Z. Miao*, L. Wu, and Y. He. Application of an Incomplete Landslide Inventory and One Class Classifier to Earthquake-induced Landslide Susceptibility Mapping[J], IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2020, 13: 1649-1660.

[13] Yixiao Zhang, Wei Wang*, Yingying Ma, Lixin Wu, Weiwei Xu, and Jia Li. Improvement in hourly PM2.5 estimations for the Beijing-Tianjin-Hebei region by introducing an aerosol modeling product from MASINGAR. Environmental Pollution. 2020, 264: 1146-1191.

[14] 汪嬴政, 李佳, 吴立新, 郭磊, 李建江. 1987 - 2018 年祁连山冰川变化遥感监测及影响因子分析. 冰川冻土, 2020, 42(2): 344-356

[15] Lei Guo, Jia Li, Lixin Wu, Zhiwei Li, Yanyang Liu, Xin Li, Zelang Miao, Wei Wang. Investigating the Recent Surge in the Monomah Glacier, Central Kunlun Mountain Range with Multiple Sources of Remote Sensing Data. Remote Sensing, 2020, 12, 966; doi:10.3390/rs12060966

[16] Lei Guo, Jia Li, Zhi-wei Li, Li-xin Wu, Xin Li, Jun Hu, Hui-lin Li, Hong-yi Li, Ze-lang Miao, Zhong-qin Li. The surge of the Hispar Glacier, Central Karakoram: SAR 3D flow velocity time series and thickness changes. Journal of Geophysical Research: Solid Earth, 2020, 125, e2019JB018945.https://doi.org/10.1029/2019JB018945

[17] Mao W F, Wu L X*, Qi Y. Impact of Compressive Stress on Microwave Dielectric Properties of Feldspar Specimen. IEEE Transactions on Geoscience and Remote Sensing, 58(2):1398-1408, 2020

[18] Mao W F, Wu L X*, Liu S J, Gao X, Huang J W and Qi Y. Additional Microwave Radiation from Experimentally Loaded Granite Covered with Sands layers: Features and Mechanisms. IEEE Transactions on Geoscience and Remote Sensing,58(7):5008-5022, 2020.

[19] Z. Miao#*, L. Gao, Y. He, L. Wu, W. Shi, et al., Use of color transformation and the geodesic method for road centreline extraction from VHR satellite images[J], International Journal of Remote Sensing, 2019, 40(10): 4043-4058.

[20] Wei Wang, Feiyue Mao, Bin Zou, Jianping Guo, Lixin Wu, Zengxin Pan and Lin Zang. Two-stage model for estimating the spatiotemporal distribution of hourly PM1. 0 concentrations over central and east China. Science of The Total Environment. 2019, 675: 658-666.

[21] Weiwei Xu, Wei Wang* and Lixin Wu. New Regression Method to Merge Different MODIS Aerosol Products Based on NDVI Datasets. Atmosphere. 2019; 10: 303.

[22] Biyan Chen*, Lixin Wu, Wujiao Dai, Xiaomin Luo*, Ying Xu. A new parameterized approach for ionospheric tomography. GPS Solutions. 2019, 23(96)

[23] Biyan Chen*, Wujiao Dai, Zhizhao Liu, Lixin Wu, Cuilin Kuang, Minsi Ao. Constructing a precipitable water vapor map from regional GNSS network observations without collocated meteorological data for weather forecasting. Atmospheric Measurement Techniques. 2018, 11(9): 5153-5166.

[24] Biyan Chen*, Wujiao Dai, Zhizhao Liu, Lixin Wu, Pengfei Xia. Assessments of GMI-Derived precipitable water vapor products over the South and East China seas using radiosonde and GNSS. Advances in Meteorology. 2018, 1-12

[25] Zhi-wei Li, Jia Li, Xiao-li Ding, Li-xin Wu, Ling-hong Ke, Jun Hu, Bing Xu, Feng Pen. Anomalous glacier changes in the southeast of Tuomuer-Khan Tengri Mountain Ranges, Central Tianshan. Journal of Geophysical Research: Atmospheres. 2018, 123: 6840–6863,https://doi.org/10.1029/2017JD028150

[26] Jia Li, Zhi-wei Li, Li-xin Wu, Bing Xu, Jun Hu, Yu-shan Zhou, Ze-lang Miao. Deriving a time series of 3D glacier motion to investigate interactions of a large mountain glacial system with its glacial lake: Use of Synthetic Aperture Radar Pixel Offset-Small Baseline Subset technique. Journal of Hydrology, 2018, 559: 596–608

[27] 毛文飞, 吴立新, 刘善军, 徐忠印. 干, 湿沙层对岩石受力微波辐射影响的实验对比. 东北大学学报: 自然科学版, 39(5): 710-715,2018

[28] 吴立新,毛文飞,刘善军,等.论岩石受力辐射变化机理与地应力遥感.遥感学报, 2018.

[29] 毛文飞,吴立新,刘善军,徐忠印.干、湿沙层对岩石受力微波辐射影响的实验对比.东北大学学报.

[30] Li J, Li ZW,Wu LX, Xu B, Hu J, Zhou YS, Miao ZL. Deriving a time series of 3D glacier motion to investigate interactions of a large mountain glacial system with its glacial lake: Use of Synthetic Aperture Radar Pixel Offset-Small Baseline Subset technique.Journal of Hydrology, 2018, 559: 596–608(SCI-I)

[31] Guo JT,Wu LX, Zhou WH, Li CL, Li FD. Section-constrained local geological interface dynamic updating method based on the HRBF surface.Journal of Structural Geology107 (2018) 64–72 (SCI-3)

[32] Bao NS,Wu LX, Ye BY, Yang K, Zhou W. Assessing soil organic matter of rehabilitated soil from large surface coal mine using a field spectroradiometer in laboratory.Geoderma, 2017(288) 47–55 (SCI-2)

[33] Guo JT, Liu SJ, Zhang PN,Wu LX, Zhou WH, Yu YN. Towards semi-automatic rock mass discontinuity orientation and set analysis from 3D point clouds.Computers & Geosciences103 (2017) 164–172. (SCI-3)

[34] Qin K,Wu LX*, Zheng S, Ma WY. Discriminating satellite IR anomalies associated with the MS 7.1 Yushu earthquake in China.Advances in Space Research,https://doi.org/10.1016/j.asr.2017.12.012(SCI-4)

[35] Qin K, Wang LY,Wu LX*, Xu J, Rao LL, Husi LT, Shi TW, Wang RF. A campaign for investigating aerosol optical properties during winter hazes over Shijiazhuang, China.Atmospheric Research, 198 (2017) 113-122 (SCI-3)

[36] Hu WM,Wu LX*,Zhang W, Liu B, Xu JX. Ground Deformation Detection Using China’s ZY-3 Stereo Imagery in an Opencast Mining Area.ISPRS International Journal of Geo-Information,2017, 6, 361; doi:10.3390/ijgi6110361

[37] Jiang JC,Wu LX*.A New Dynamic Network Flow Algorithm Using Base State Amendment Model for Emergency Response.Transaction in GIS. 2017; 00:1–25.https://doi.org/10.1111/tgis.12271

[38] Jiang JC, Li QQ,Wu LX, and Wei T. Multi-Objective Emergency Material Vehicle Dispatching and Routing under Dynamic Constraints in an Earthquake Disaster Environment.ISPRS International Journal of Geo-Information. 2017, 6, 142; doi:10.3390/ijgi6050142

[39] 吴立新,秦凯,刘善军.断裂活动及孕震过程遥感热异常分析的研究进展.测绘学报, 2017, 46(10): 1470-1481(EI)

[40] 张嵩,马保东,陈玉腾,吴立新.融合遥感影像光谱和纹理特征的矿区林地信息变化检测.地理与地理信息科学, 2017, 33(6): 44-49

[41] 吴立新,许志华,范松滔,王秋玲.植被稀疏地区沟蚀变化的TLS监测与沟蚀量估算.武汉大学学报(信息科学版), 2017 42(10): 1-6(EI)

[42] 江锦成;吴立新;张媛媛.适用于大规模网络的全源最短路径重优化算法-RASP算法.东北大学学报, 2017, 38(7):1037-1042(EI)

[43] 胡青松,曹灿,吴立新,张申面向矿井目标的双标签高精度定位方法.中国矿业大学学报, 2017, 46(2): 437-442 (EI)

[44] Tan K, Liao ZH, Du PJ,Wu LX. Land surface temperature retrieval from Landsat 8 data and validation with geosensor network.Front. Earth Sci., 2016, DOI 10.1007/s11707-016-0570-7 (SCI-4)

[45] Bai Y,Wu LX*, Qin K et al. A Geographically and Temporally Weighted Regression Model for Ground-level PM2.5 Estimation from Satellite-derived 500m Resolution AOD.Remote Sensing, 2016, 8, 262; doi:10.3390/rs8030262(SCI-3)

[46] Wu LX, Zheng S, Angelo DS,et al, Geosphere coupling and hydrothermal anomalies before the 2009 Mw 6.3 L’Aquila earthquake in Italy,Nat. Hazards Earth Syst. Sci.,16, 1859–1880, 2016,doi:10.5194/nhess-16-1859-2016 (SCI-3)

[47] Qin K,Wu LX*; Wong MS, et al. Trans-boundary aerosol transport during a haze episode in China January 2015 revealed by ground-based LiDAR and CALIPSO satellite.Atmospheric Environment, 2016 141:20-29 (SCI-2)

[48] Zhang W, Zhang DS,Wu LX, Li JJ, and Cheng JX. Radon release from underground strata to the surface and uniaxial compressive test of rock samples.Acta Geodyn. Geomater.,2016, 13(4): 409–41,DOI: 10.13168/AGG.2016.0023

[49] Guo JT,Wu LX, Zhou WH, Jiang JZ and Li CL. Towards Automatic and Topologically Consistent 3D Regional Geological Modeling from Boundaries and Attitudes.ISPRS Int. J. Geo-Inf., 2016, doi:10.3390/ijgi5020017

[50] Xu ZH,Wu LX*, Markus G, Wang R, and Yang HC. Skeletal camera network embedded structure-from-motion for 3D scene reconstruction from UAV images.ISPRS JPRS, 121 (2016) 113–127 (SCI-2)

[51] Liu SJ, Xu ZY, Wei JL, Huang JW, andWu LX. Experimental study on microwave radiation from deforming and fracturing rock under loading outdoor.IEEE TGARS, 2016, 54(9): 5578-5587 (SCI-I)

[52] 胡青松,曹灿,吴立新,张申.机会网络中节点相遇的时空特征.中国矿业大学学报, 2016, 45(5): 1058-1064 (EI)

[53] 胡青松,张申,吴立新,丁恩杰等.矿井动目标定位:挑战、现状与趋势.煤炭学报, 2016, 41(5):1059-1068 (EI)

[54] 吴立新,吕鑫,秦凯,白杨,李佳乐,任传斌,张媛媛.基于太阳光度计地基观测的徐州气溶胶光学特性变化分析.科学通报, 2016 , 61(20): 2287 ~-2298(EI)

[55] 许志华,吴立新,陈绍杰,王植.基于无人机影像的露天矿工程量监测分析方法,东北大学学报, 2016, 37(1): 84-88(EI)

[56] 李佳乐,吴立新,任传斌等. APEC区域减排对北京PM2.5浓度时空变化的影响分析.地理与地理信息科学, 2016, 32(3): 110-115

[57] 郭甲腾,吴立新,周文辉.基于径向基函数曲面的矿体隐式自动三维建模方法.煤炭学报, 2016, 41(8):2130 -2135(EI)

[58] 周文辉,郭甲腾,栗云峰,吴立新,李超岭.基于Coons曲面与约束三角网的区域地质调查三维建模方法.地球信息科学学报,2016,18(6):734-741

[59] 任传斌,吴立新*,张媛媛,李佳乐,柴曼,项程程等.北京城区PM2.5输送途径与潜在源区贡献的四季差异析,中国环境科学,2016,36(9):2591~2598(EI)

[60] 张媛媛,吴立新,任传斌. APEC会议前后京津冀空气污染物时空变化特征.科技导报,2016, 34(24):115-121

[61] 余接情,石珍,吴立新,邢松伟,贾永基.基于SDOG-ESSG的地球系统元胞自动机框架及应用实验.测绘学报,2016, 45(S1): 40-47

[62] 魏嘉磊,刘善军,吴立新,黄建伟,张艳博,田宝柱等.含孔岩石双轴加载过程声发射多参数特征对比分析.岩石工程与采矿安全学报,2015,32(6): 1017-1025

[63] 张振鑫,吴立新*,李志锋,杨宜舟,江锦成, 许志华.基于CD-TIN与三棱柱的城区内涝淹没模拟算法.测绘科学, 2016, 41(6): 87-91

[64] Hu QS,Wu LX, Cao C and Zhang S. Object Localization Method Based on Directional Antennas,Int J Distributed Sensor Networks. V. 2015, ID-134964,http://dx.doi.org/10.1155/2015/134964( SCI-4)

[65] Hu QS, Ding YS,Wu LX, Cao C and Zhang S. An Enhanced Localization Method for Moving Targets in Coal Mines Based on Witness Nodes,Int J Distributed Sensor Networks, V.2015, ID-876721http://dx.doi.org/10.1155/2015/876721(SCI-4)

[66] Zhang YF,Wu LX. Two (2+1)-dimensional expanding dynamical systems associated to the mKP hierarchy.Applied Mathematics and Computation, 2015, 268: 564-571 (SCI-2, top, 1.55)

[67] He LM,Wu LX, Liu SJ, Liu SN. Superimposed disturbance in the ionosphere triggered by spacecraft launches in China.Annals Geophysics, 2015, 33: 1361–1368 (SCI-4)

[68] He LM,Wu LX*, Liu SJ, Wang Z, Su C, Liu SN. Mapping Two-Dimensional Deformation Field Time-Series of Large Slope by Coupling DInSAR-SBAS with MAI-SBAS.Remote Sens.2015, 7, 12440-12458; doi:10.3390/rs70912440 (SCI-3)

[69] Bai Y, Wong MS, Shi WZ,Wu LX, Qin K. Advancing of Land Surface Temperature Retrieval Using Extreme Learning Machine and Spatio-Temporal Adaptive Data Fusion Algorithm.Remote Sensing, 2015, 7, 4424-4441; doi:10.3390/rs70404424 (SCI-3)

[70] Niu XL, Tang H,Wu LX, et al. Imaging-Duration Embedded Dynamic Scheduling of Earth Observation Satellites for Emergent Events.Mathematical Problems in Engineering. 2015,http://dx.doi.org/10.1155/2015/731734(SCI-3)

[71] Zhai XJ, Niu XL, Tang H,Wu LX, et al. Robust Satellite Scheduling Approach for Dynamic Emergency Tasks.Mathematical Problems in Engineering. 2015,http://dx.doi.org/10.1155/2015/482923(SCI-3)

[72] Jiang JC,Wu LX*. Two-stage distributed parallel algorithm with message passing interface for maximum ?ow problem.J Supercomputing, 2015, 71:629–647 (SCI-4)

[73] 张振鑫,吴立新*,李志锋,杨宜舟,江锦成,许志华.基于CD-TIN与三棱柱的城区内涝淹没模拟算法.测绘科学, 2016, 41(6): 87-91

[74] 许志华,吴立新*,刘 军,沈永林,李发帅,王然.顾及影像拓扑的SfM算法改进及其在灾场三维重建中的应用.武汉大学学报(信息科学版),2015, 40(5): 599-606(EI)

[75] 余接情,吴立新.球体坐标与SDOG-ESSG格网码的相互转换算法.武汉大学学报(信息科学版),2015, 40(8): 1116-1121 (EI)

[76] 余接情,吴立新. SDOG-ESSG的几何分布规律及面邻近计算.中国矿业大学学报,2015, 44(2): 359-366(EI)

[77] 徐忠印,刘善军,吴立新等.岩石变形破裂红外与微波辐射变化特征对比研究.东北大学学报(自然科学版),2015,36(12): 1738~1742(EI)

[78] 郭甲腾,吴立新,杨宜舟等.北斗静止轨道卫星信号盲区快速并行解算方法.国防科技大学学报, 2015, 37(5): 47-53

[79] 杨宜舟,吴立新,郭甲腾等.地籍数据库点线拓扑一致性并行检查方法.国防科技大学学报, 2015, 37(5): 39-46

[80] Li ZF,Wu LX*, Zhu W, Hou ML, Yang YZ, Zheng JJ. A New Method for Urban Storm Flood Inundation Simulation with Fine CD-TIN Surface.Water, 2014( 6): 1151-1171 (SCI-4)

[81] He LM,Wu LX*, AD Santis, et al. Is there a one-to-one correspondence between ionospheric anomalies and large earthquakes along Longmenshan faults?Annals of Geophysics, 2014, 32:187-196(SCI-4)

[82] Zhen S,Wu LX*, Qin K. Multiple parameters anomalies for verifying the geosystem spheres coupling effect: a case study of the 2010 Ms7.1 Yushu earthquake in China.Annals of Geophysics. 2014, 57(4): 1-12 (SCI-4)

[83] Xu ZH,Wu LX*, Shen YL, Li FS, et al. Tridimensional Reconstruction Applied to Cultural Heritage with the use of Camera-Equipped UAV and Terrestrial Laser Scanner.Remote Sensing, 2014 (6): 10413-43 (SCI-3)

[84] Qin K,Wu LX*, Zhen S, Bai Y, Lv X. Is there an abnormal enhancement of atmospheric aerosol before the 2008 Wenchuan earthquake?Advances in Space Research. 2014, 54: 1029-1034 (SCI-4)

[85] Qin K,Wu LX*, Ouyuang XY, Shen XH, Zhen S. Surface latent heat flux anomalies quasi-synchronous with ionospheric disturbances before the 2007 Pu'er earthquake in China.Advances in Space Research. 2014, 53(2): 266-271 (SCI-4)

[86] Hu QS,Wu LX, Geng F, Cao C. A Data Transmission Algorithm Based on Dynamic Grid Division for Coal Goaf Temperature Monitoring.Mathematical Problems in Engineering, 2014,http://dx.doi.org/10.1155/2014/652621(SCI-3)

[87] Zhang W, Zhang DS,Wu LX, Wang HZ. On-Site Radon Detection of Mining-induced Fractures from Overlying Strata to the Surface: A Case Study of the Baoshan Coal Mine in China. Energies, 2014, 7:8483-8507 doi:10.3390/en7128483 (SCI-4)

[88] Ma BD,Wu LX, Zhang XX, Li XC, Liu Y, Wang SL. Locally adaptive unmixing method for lake-water area extraction based on MODIS 250m bands. Int. J. Applied Earth Observations & Geoinformation,2014(3):109-118 (SCI-3)

[89] 吴立新,余接情,胡青松等.数字矿山与智能感知的统一空间框架与精确时间同步问题.煤炭学报, 2014,39(8):1584-1592(EI)

[90] 李恒凯,吴立新,刘小生.稀土矿区地表环境变化多时相遥感监测研究_以岭北稀土矿区为例.中国矿业大学学报,2014,43(6): 1087-1094(EI)

[91] 李志锋,吴立新*,张振鑫.利用CD_TIN的城区暴雨内涝淹没模拟方法及其实验.武汉大学学报(信息科学版),2014,39(9):1080-1085(EI)

[92] 胡青松,吴立新,张申等.事件驱动的灾害监测传感网中的节能数据传输.吉林大学学报(工学版), 2014, 44(5):1404-09(EI)

[93] 胡青松,吴立新,张申等.煤矿工作面定位WSN的部署与能耗分析.中国矿业大学学报,2014, 43(2): 351-355(EI)

[94] 吴立新,吕鑫,秦凯等.秸秆燃烧期间徐州市空气污染物时空分布特征分析.地理与地理信息科学,2014, 30(1):18-22

[95] 王秋玲,吴立新*,许志华.CBERS-02B与资源三号多光谱影像的光谱可分性实验对比.地理与地理科学, 2014, 30(3): 25-28

[96] 白杨,秦凯,吴立新*,等.徐州市主干道路黑炭气溶浓度移动观测实验.地理与地理信息科学. 2014, 30(1):45-49

[97] 江锦成,吴立新*,杨宜舟,李志锋.网络最大流的自适应求解算法: SAPR算法.计算机应用研究,2014,31(10): 2969-73

[98] Qin K,Wu LX*, Zheng S, Liu SJ. A Deviation-Time-Space-Thermal (DTS-T) Method for Global Earth Observation System of Systems (GEOSS)-Based Earthquake Anomaly Recognition: Criterions and Quantify Indices.Remote Sensing. 2013; 5(10):5143-5151(SCI-3)

[99] Santis AD, Qamili E, andWu LX. Toward a possible next geomagnetic transition?Nat. Hazards Earth Syst. Sci., 13, 3395–3403, 2013 (SCI-3)

[100] Li HK,Wu LX,Li FS. Optimal fractal band selection on HJ-1 CCD image for land use classification.Journal ofRemote Sensing, 2013,17(6): 1572-86

[101] Shen YL,Wu LX*, Di LP. Hidden Markov Models for Real-Time Estimation of Corn Progress Stages Using MODIS and Meteorological Data.Remote Sensing. 2013(5): 1734-1753(SCI-3)

[102] 刘英,吴立新,马保东.基于TM/ETM光谱特征空间的土壤湿度遥感监测,中国矿业大学学报, 2013, 42(2): 296-301(EI)

[103] 马保东,吴立新,许志华.利用资源三号测绘卫星立体像对提取DEM及精度评价:以神东矿区大柳塔矿为例.测绘通报, 2013(11): 68-70

[104] 胡青松,吴立新,张申,等.基于智能天线和动态虚拟簇的均衡节能路由.通信学报,2013, 34(8): 169-176, EI: 20133816756926

[105] 胡青松,吴立新,张申,等.协作WSN路由算法的能耗及其影响因素研究.华中科技大学学报(自然科学版), 2013, 41(3): 81-85,EI: 20131316153632

[106] 徐忠印,刘善军,吴立新,等.常温下花岗岩受力热红外光谱变化与敏感响应波段.红外与毫米波学报. 2013, 32(1): 44-49. (SCI-4)

[107] 吴立新,杨宜舟,秦承志等.面向新型硬件构架的新一代GIS基础并行算法研究.地理与地理信息科学. 2013, 29(4): 1-8

[108] 薄海光,吴立新*,余接情等.基于GPU加速的SDOG并行可视化实验.地理与地理信息科学. 2013, 29(4): 72-76

[109] 杨宜舟,吴立新*,郭甲腾等.一种实现拓扑关系高效并行计算的矢量数据划分方法.地理与地理信息科学. 2013, 29(4): 25-29

[110] 江锦成.吴立新2*,孙文斌等.点集V图-K阶邻近并行搜索算法设计与实验.地理与地理信息科学. 2013, 29(4): 30-34

[111] 吴立新,余接情,杨宜舟等.基于地球系统空间格网的全球大数据空间关联与共享服务.测绘科学技术学报. 2013, 30(4): 409-415

[112] 李恒凯,吴立新,李发帅.面向土地利用分类的HJ_1CCD影像最佳分形波段选择.遥感学报, 2013, 17(6):1579-1586(EI)

[113] 许志华,刘纯波,王平,王秋玲,李发帅,吴立新.四川芦山Ms7.0级地震空基联合观测与灾情增强识别.科技导报, 2013, 31(12):37-41.

[114] 李志锋,吴立新,王然等.四川芦山Ms 7.0级地震灾情快速评估与反思.科技导报, 2013, 31(12):31-36.

[115] Qin K,Wu LX*, AD Santis. Preliminary analysis of surface temperature anomalies preceding the two major 2012 Emilia (Italy) earthquakes.Annals of Geophysics, 2012, 55(4), 823~828(SCI-4)

[116] Yu JQ,Wu LX*, Li ZF, Li XJ. An SDOG-based intrinsic method for three-dimensional modelling of large-scale spatial objects.Annals of GIS, 2012, 18(4): 267–278

[117] 吴立新,汪云甲,朱旺喜,张瑞新,丁恩杰,张申.三论数字矿山:借力物联网保障矿山安全与智能采矿.煤炭学报, 2012, 37(3):357-365. (EI,领跑5000)

[118] Yu JQ,Wu LX, Zi GJ, Guo ZZ. SDOG-based Multi-Scale 3D Modeling and Visualization on Global Lithosphere.Science in China (D),2012, 55(6): 1012-1020 (SCI-4)

[119] Wu LX*, Qin K, Liu SJ. GEOSS-based Thermal Parameters Analysis for Earthquake Anomaly Recognition.Proceedings of IEEE, 2012,100(10): 2891-2907 (SCI-1, EI)

[120] Qin K,Wu LX*,AD Santis, Meng J, Ma WY, Cianchini G. Quasi-Synchronous Multiple-Parameter Anomalies Associated with the 2010-2011 New Zealand Earthquake Sequence.Nat. Hazards Earth Syst. Sci.,2012, 12, 1059–1072 (SCI-3)

[121] Cianchini G, AD Santis, DR Barraclough,Wu LX, and Qin K. Magnetic transfer function entropy and the 2009 Mw = 6.3 L’Aquila earthquake (Central Italy).Nonlin. Processes Geophys., 19, 401–409, 2012 (SCI-4)

[122] He LM,Wu LX*,S Pulinets, Liu SJ, Yang F. A nonlinear background removal method for seismo-ionospheric anomaly analysis under a complex solar activity scenario: A case study of the M9.0 Tohoku earthquake.Advance in Space Research,2012, 50:211-220 (SCI-4)

[123] 张学东,吴立新,葛大庆,张玲,王艳等.基于相干目标短基线InSAR的矿业城市地面沉降监测研究.煤炭学报, 2012,37(10): 1607-1611 (EI)

[124] 刘英,马保东,吴立新,林亚卫.基于NDVI—ST双抛物线特征空间的冬小麦旱情遥感监测,农业机械学报, 2012, 43(5):55-63.(EI)

[125] 刘善军,吴立新,冯哲,徐忠印.压力作用下石英砂岩的热红外光谱变化与敏感响应波段.光谱学与光谱分析, 2012, 32(1): 78-82 (SCI-4, EI)

[126] 余接情,吴立新,訾国杰,郭增长.基于SDOG的岩石圈多尺度三维建模与可视化方法.中国科学, 2012, 42(5): 755-763(SCI-4)

[127] 钟声,王川婴,吴立新,吴育华,王清远. 点状不良地质体钻孔雷达响应特征:围岩及充填效应正演分析. 岩土力学, 2012, 33(4): 1191-1195(EI)

[128] 吴立新,余接情.地球系统空间格网及其应用模式. 地理与地理信息科学, 2012,28(1):7-13

[129] 余接情,吴立新.适应性球体退化八叉树格网及其编码方法. 地理与地理信息科学,2012,28(1):14-18

[130] 童晓冲,吴立新,余接情,李志锋.基于ESSG的空间轨道目标管理与碰撞检测方法. 地理与地理信息科学,2012,28(1): 19-23

[131] 李志锋,吴立新,薄海光,余接情.基于VisIt的全球科学数据并行可视化:以大气温度场为例. 地理与地理信息科学, 2012, 28(1): 24-28

[132] 李志锋,吴立新,余接情,薄海光.基于Visit与地球系统格网的并行可视化实验.测绘科学技术学报, 2012, 29(2):144-148

[133] 王植,吴立新,贺正雄,李慧盈.基于正交多项式的平原城区机载LiDAR数据滤波算法. 地理与地理信息科学, 2012, 28(1): 43-46

[134] 吴鹏天昊,吴立新*,沈永林,许志华,王植.基于高分影像纹理分维变化的灾害自动识别方法.地理与地理信息科学,2012, 28(2): 9-13

[135] Wu LX, Liu SJ, Wu YH. Infrared Imaging Detection on Water-Permeation of Field Large-Scale Rock Relic.IEEE Transaction on Geoscience & Remote Sensing.2011, 49(1-II): 581-590(SCI-2, EI)

[136] Qin K,Wu LX*, Angelo DS. Wang H.Surface latent heat flux anomalies before theMS 7.1 New Zealand earthquake 2010.Chinese Science Bulletin. 2011, 56(31): 3273-3280 (973)(SCI-4)

[137] Ma YT, Liu SJ,Wu LX, Xu ZY. Two-step method to extract seismic microwave radiation anomaly: Case study of Ms8.0 Wenchuan earthquake.Earthqauke Science, 2011, 24(6): 577-582

[138] Wang Z,Wu LX, Li HY. Key technology of mine underground mobile positioning based on LiDAR and coded sequence pattern.Transactions of Nonferrous Metals Society of China, 2011, (21): 570-576. (SCI-4, EI)

[139] 秦凯,吴立新,马未宇,林亚卫.基于NCEP数据的地震热红外遥感逐像元分析方法.遥感信息,2011(4):18-22

[140] 沈永林,李晓静,吴立新.基于航空影像和LiDAR数据的海地地震滑坡识别研究.地理与地理信息科学,2011,27(1):16-20

[141] 王植,吴立新,孔祥勤.盲环境移动定位Ⅰ:序列编码图形路标识别算法.东北大学学报,2011, 32(5):732-735(EI)

[142] 吴立新,王植,孔祥勤.盲环境移动定位Ⅱ:基于单目视觉系统的定位技术.东北大学学报,2011, 32(5):736-740(EI)

[143] 李永强,吴立新,刘会云,张健雄,刘昌华.陡坡密集点云双重滤波方法研究.地理与地理信息科学,2011, 27(1):7-10

[144] 王彦彬,吴立新.地上下集成模型立体显示系统.东北大学学报, 2011, 32(7): 1016-1019(EI)

[145] 高铁军,吴立新.论城市管网智慧管理研究范畴与关键技术.地理与地理信息科学,2011, 27(4): 19-23

[146] 钟声,王川婴,吴立新,等.基于钻孔雷达和数字摄像的动态勘察技术研究[J

[147] 钟声,王川婴,吴立新,唐新建,王清远.钻孔雷达与数字摄像在地质勘探中的综合应用.地球物理学进展,2011,26(1):335-341

[148] 钟声,王川婴,吴立新,吴育华;王清远. 点状不良地质体钻孔雷达响应特征的形状效应正演分析. 岩土力学, 2011, 32(5): 1583-1588(EI)

[149] 刘善军,徐忠印,吴立新,马保东,刘鑫.遥感岩石力学在矿山应用的试验研究. 金属矿山, 2011(7): 61-65 (973)

[150] 秦凯,吴立新*, Angelo DS,王鹤. 2010年新西兰MS7.1级地震地表潜热异常.科学通报, 2011,56: 28-29

[151] 沈永林,刘军,吴立新,李发帅,王植.基于无人机影像和飞控数据的灾场重建方法研究. 地理与地理信息科学, 2011, 27(6):14-17

[152] 马保东,吴立新,刘英,林亚卫.基于MODIS的神东矿区土壤湿度变化监测.科技导报,2011,29(35):45-49

[153] 江锦成,郭甲腾,吴立新,张荣兵,杨宜舟.三维地学实体多粒度栅格剖分与布尔运算的并行算法. 科技导报,2011,29(35): 18-23

[154] 刘英,吴立新,马保东,林亚卫.神东矿区土壤湿度遥感监测与双抛物线型NDVI-TS特征空间.科技导报,2011,29(35):39-44

[155] 郭强,王川婴,吴立新.平洞摄影测量系统研究.岩石力学与工程学报, 2010, 29(1):104-110(EI)

[156] 刘善军,吴立新,张艳博.潮湿岩石受力过程红外辐射的变化特征.东北大学学报(自然科学版), 2010, 31(2): 265-268(EI)

[157] 秦凯,吴立新,马未宇. 2009青海海西地震序列的潜热通量异常时空特征.科技导报,2010,28(4): 68-73 (EI)

[158] Qin K,Guo GM,Wu LX.Surface latent heat flux anomalies preceding inland earthquakes in China.Earthquake Science,2009, 22(5):555-562

[159] 马保东,吴立新,刘善军.中国汶川Ms8_0级地震前NDVI变化特征及其佐证.科技导报,2010, 28(13): 52-57

[160] 吴立新,李志锋,王植,李金平,刘纯波.地震灾情快速评估方法和应用:以玉树地震为例.科技导报, 2010 28(24): 38-43(EI)

[161] 王彦彬,吴立新.面向服务的网络数字矿山系统.东北大学学报, 2010, 31(5): 725-732 (EI)

[162] 张元生,吴立新,郭甲腾,杨宜舟.顾及语义的地上下无缝集成多尺度建模方法.东北大学学报, 2010, 31(9):1341-1344(EI)

[163] 曲宗顺,吴立新,王植. 顾及数据不完备性的农作物救灾效益评估模型与应用. 吉林农业大学学报, 2010, 32( 6) : 709-714

[164] 吴立新,余接情.基于球体退化八叉树的全球三维网格与变形特征.地理与地理信息科学,2009, 24(1):1-4

[165] 余接情,吴立新.球体退化八叉树网格编码与解码研究.地理与地理信息科学,2009, 24(1):5-9

[166] 张元生,吴立新.一种基于拓扑三角形集的地上下空间数据集成方法.地理与地理信息科学,2009, 24(1):64-67

[167] 马保东,陈绍杰,吴立新.基于SPOT_VGT-NDVI的矿区植被遥感监测方法.地理与地理信息科学,2009, 24(1):84-87

[168] 刘善军,吴立新,张艳博.岩石破裂前红外热像的时空演化特征.东北大学学报(自然科学版), 2009, 30(7):1034-1038(EI)

[169] 车德福,吴立新,殷作如.三维地质建模中地层错断处自动构建的新方法.煤炭学报. 2009, 34(10):1305-1309(EI)

[170] 吴立新,李金平,刘善军.基于基准场的地震红外异常分析技术.地震地质,2009, 29(增):26-33

[171] 吴立新,马保东,刘善军.基于SPOT卫星NDVI数据的神东矿区植被覆盖动态变化分析.煤炭学报,2009, 34(9): 1217-1222(EI)

[172] 姜云,吴立新,车德福.地下空间质量熵权与可变模糊集组合评估.中国矿业大学学报, 2009, 38(6): 872-877(EI)

[173] 刘善军,吴立新,张艳博.拐折非连通断层加载失稳的热辐射演化特征.岩石力学与工程学报, 2009, 28(增):3342-3348(EI)

[174] Wu LX,Wang YB,Shi WZ. Integral Ear Elimination And Virtual Point-Based Updating Algorithms for Constraint Delaunay TIN.Science In China (E),2008, 51(suppl): p 135-144(SCI-4, EI)

[175] Wu LX, Che DF. Developments of Spatial Information-Based Digital Mine in China.J of Coal Sci. & Eng.(China), 2008, 14(3): 415-419

[176] 郭甲腾,吴立新.栅格空间中三维地学实体拓扑关系表达的K6N-9I模型.地理与地理信息科学, 2008, 24(1): 6-9

[177] 吴立新,徐磊,车德福.地层本体及其在大区域钻孔数据集成中的应用.武汉大学学报(信息科学版), 2008, 33(2): 144-148(EI)

[178] 车德福,吴立新,殷作如.一种基于GTP的复杂地质体真三维建模方法:岩柱体分区法.地理信息世界,2008, 6(1): 34-38

[179] 李金平,吴立新,温志勇,刘善军.中国沿海和内陆强震前地表潜热通量异常特征.科技导报,2008,26(5): 40-45

[180] 车德福,吴立新,殷作如,郭甲腾.基于GTP的断层三维交互建模方法.东北大学学报(自然科学版). 2008, 29(3): 395-398(EI)

[181] 王彦兵,吴立新,李小娟.三维GIS空间建模方法评述.中国图象图形学报, 2007(8):1430-1434

[182] 吴立新,刘善军,陈云浩,马保东,李玲玲.汶川地震前卫星热红外异常与云异常现象.科技导报, 2008, 26(10):28-29

[183] 吴立新.地震监测预报的误区分析与工作建议.科技导报, 2008, 26(10):32-36

[184] 李金平,吴立新,刘善军,马保东.强震前热红外异常识别方法与定量分析模型.中国矿业大学学报.2008, 37(6): 808-813 (EI)

[185] 吴立新.中国数字矿山进展.地理信息世界. 2008, 6(5): 6-13

[186] Shi WZ, Wu YH,Wu LX.Quantitative analysisof the projectileimpact on rockusing infrared thermography.Int J. Impact Engineering, 2007, 34(5):990-1002(SCI-2, EI)

[187] 吴立新,姜云,车德福,祝文君.城市地下空间资质量模糊综合评估与3D可视化.中国矿业大学学报, 2007, 36(1): 97-102(EI)

[188] 姜云,吴立新,车德福,徐磊.城市地下空间资源质量评估基本单元体的研究.武汉大学学报(信息科学版),2007, 32(3): 275-279(EI)

[189] 吴立新,刘善军. GEOSS条件下固体地球灾害的广义遥感监测.科技导报, 2007, 25(6):5-11

[190] 吴立新,陈学习,车德福,徐磊.一种基于GTP的地下真3D集成实体空间模型.武汉大学学报(信息科学版), 2007, 32(4): 331-335(EI)

[191] 吴立新,殷倩,蔡振峰,车德福.空间编码QuaPA方法的改进与实验.地理与地理信息科学,2007, 23(2):8-11

[192] Wu LX, Liu SJ,Wu YH, Wang CY.Precursors for rock fracturing and failure—Part I: IRR image abnormalities. Int J Rock Mech Mining Sci, 2006, 43(3): 473-482(SCI-2, EI)

[193] Wu LX, Liu SJ,Wu YH,Wang CY.Precursors for rock fracturing and failure—Part II: IRRT-Curve abnormalities.Int J Rock Mech Mining Sci, 2006, 43(3): 483-493(SCI-2, EI)

[194] Liu SJ,Wu LX,Wu YH. Infrared radiation of rock at failure.Int J Rock Mech Mining Sci, 2006, 43(5): 972-979(SCI-2, EI)

[195] Wang YB,Wu LX, Shi WZ,Li XJ. 3D integral modeling forcity surface & subsurfqace. In:Innovations in 3D Geo-Information Systems, Springer, 2006, 95-105

[196] 车德福,陈学习,吴立新,徐磊.基于广义三棱柱体元的三维地层建模方法.辽宁工程技术大学学报, 2006, 25(1):36-38(EI)

[197] 吴育华,吴立新,史文中,钟声.岩石低速撞击的热红外特征分析与反演.岩石力学与工程学报,2006, 25(1):61-66(EI)

[198] 郝延锦,吴立新,戴华阳.用弹性板理论建立地表沉陷预计模型.岩石力学与工程学报,2006,25(s1):2958-2962(EI)

[199] 郭大海,吴立新,王建超,郑雄伟. IMUDGPS辅助航空摄影新技术的应用.国土资源遥感,2006(1): 51-55

[200] 吴立新,徐磊,陈学习,车德福.基于主体人与地学本体的人-地-GIS关系讨论.地理与地理信息科学. 2006, 22(1):1-6

[201] 吴立新,李德仁.未来对地观测协作与防灾减灾.地理与地理信息科学, 2006, 22(3):1-8

[202] 吴立新,唐春安, 钟声,吴育华,张后全,谭志宏.非连续断层破裂红外辐射与声发射、应力场的对比研究.岩石力学与工程学报, 2006, 25(6): 1111-1117(EI)

[203] 张文胜,殷倩,吴立新,徐磊,臧志刚.基于模糊综合评判的动态路径行程时间预测模型.地理与地理信息科学. 2006, 22(4):25-27

[204] 吴立新,车德福,郭甲腾.面向地上下无缝集成建模的新一代三维地理信息系统.测绘工程. 2006,15(5): 1-6

[205] 车德福,吴立新,陈学习,徐磊.基于GTP修正的R3DGM建模与可视化方法.煤炭学报,2006, 31(5): 576-580(EI)

[206] 吴立新,吴育华,钟声,王川婴,李国华.岩石撞击的热红外成像探测研究进展与方向.岩石力学与工程学报,2006, 25(11): 2180~2186(EI)

[207] 刘善军,吴立新,李金平,董彦卿,马保东.台湾恒春地震前的卫星热红外异常特征及其机理.科技导报, 2006, 25(6):32-37

[208] 吴育华,吴立新,钟声,张玲.岩石撞击引发矿井瓦斯爆炸可能性的实验探索.煤炭学报,2005, 30(3):278-282(EI)

[209] 张文胜,吴立新.新型测量仪器支架及控制点的限额设计.辽宁工程技术大学学报, 2005, 24(3): 344-346

[210] 吴立新,龚建雅,徐磊,赵学胜.关于空间数据与空间数据模型的思考.地理信息世界, 2005(2): 41-56

[211] 吴立新,高均海,葛大庆,廖明生.工矿区地表沉陷D-InSAR监测试验研究.东北大学学报, 2005, 26(8):778-782:(EI)

[212] 姜云,吴立新,车德福,徐磊,祝文君,石晓冬.基于粗糙集和GeoMo3D的城市岩土参数重要性评估与可视化.地理与地理信息科学. 2005(6): 19-36

[213] 徐磊,吴立新,车德福,吕晓俭,郭萌.面向数据集成的城市空间数据内涵与特征分析.地理与地理信息科学. 2005(6):25-28

[214] 王彦兵,吴立新,史文中,贾晓林.基于虚点影响域重构的CD-TIN约束线动态删除算法.武汉大学学报(信息科学版)2005, 30(10):862-865(EI)

[215] 姜云,吴立新,杜立群.城市地下空间开发利用容量评估指标体系的研究.城市发展研究,2005(5): 47-51

[216] 吴立新,钟声,吴育华,王川婴,张玲.落球撞击岩石热红外辐射温度的时延特征.中国矿业大学学报, 2005, 34(5): 557-563(EI)

[217] Gao JH,Wu LX.Practice and technical approach of GPS observation of mining-induced ground subsidence. The 12th Int Congress of ISM, SEP 20-26, 2004.Transaction of Nonferous Metals Scociety of China,2005 , 15(Supl): 57-60(ISTP)

[218] 吴立新,史文中.论三维地学空间建模.地理与地理信息科学. 2005, 21(1): 1-4

[219] Wu LX. Topological relations embodied in ageneralized tri-prism (GTP) model for a 3D geosciences modeling system.Computer & Geosciences. 2004, 30 (4):405-418 (SCI-4、EI)

[220] Wu LX, Wu YH, Liu SJ, Li GH, Li YQ. Infrared radiation of rock impacted at low velocity.Int J Rock Mech & Mining Sci, 2004, 41(2): 321-327(SCI-2, EI)

[221] Wu LX, Liu SJ, Wu YH,Wang JZ.From qualitative to quantitative information: the development of remote sensing rock mechanics (rsrm).Int J Rock Mech & Mining Sci., 2004, 41(3): 415-416(SCI-2, EI)

[222] 吴立新,刘善军,吴育华,李永强.遥感岩石力学(I):非连续组合断层破裂的热红外辐射规律及其构造地震前兆意义.岩石力学与工程学报. 2004, 23(1): 24-30(EI)

[223] 吴立新,刘善军,吴育华,李永强.遥感岩石力学(II):断层双剪粘滑的热红外辐射规律及其构造地震前兆意义.岩石力学与工程学报, 2004 , 23(2) : 192-198(EI)

[224] 吴立新,刘善军,吴育华,李永强.遥感岩石力学(III):交汇断层粘滑的热红外辐射与声发射规律及其构造地震前兆意义.岩石力学与工程学报, 2004, 23(3): 401-407(EI)

[225] 吴立新,刘善军,吴育华,李永强.遥感岩石力学(IV):岩石压剪破裂的热红外辐射规律及其地震前兆意义.岩石力学与工程学报, 2004, 23(4): 539-544(EI)

[226] 刘善军,吴立新,吴育华,李永强.遥感岩石力学(V):岩石粘滑过程中红外辐射的影响因素分析.岩石力学与工程学报, 2004, 23(5): 730-735(EI)

[227] 刘善军,吴立新,吴育华,李永强.遥感岩石力学(VI):岩石摩擦滑移特征及其影响因素分析.岩石力学与工程学报, 2004, 23(8): 1247-1251(EI)

[228] 吴立新,吴育华,刘善军,李永强.遥感岩石力学(VII):岩石低速撞击的热红外遥感成像实验研究.岩石力学与工程学报, 2004, 23(9): 1439-1445(EI)

[229] 刘善军,吴立新,王川婴,葛大庆,吴育华.遥感岩石力学(VIII):论岩石破裂的红外前兆.岩石力学与工程学报, 2004, 23(10): 1621-1627(EI)

[230] Wu LX, Shi WZ.GTP-based Integral Real-3D Spatial Model for Engineering Excavation GIS(E2GIS).Geo-Spatial Information Sci., 2004,7(2):123-128

[231] 方兆宝,吴立新,林珲,王伟平,石志坤,许益民,李红兵.北斗双星导航定位系统在某地区的动静态试验.辽宁工程技术大学学报. 2004,23(6):744-746

[232] 吴立新,朱旺喜,张瑞新.数字矿山与我国矿山未来发展.科技导报,2004(7): 28-32

[233] 姜云,吴立新.煤炭城市环境承载力评估的探讨.中国矿业, 2004, 13(3):25-28

[234] 郭大海,吴立新,王建超,郑雄伟.机载POS系统对地定位方法初探.国土与环境遥感, 2004(2):26-31

[235] 吴立新.真三维地学构模的若干问题.地理信息世界. 2004(3): 13-19

[236] 常占强,吴立新.基于小波变换和混和熵编码的山区格网DEM数据压缩.地理与地理信息科学. 2004, 20(1): 24-27

[237] 吴立新,高均海,葛大庆,殷作如,邓智毅,刘宏军.基于D-InSAR的煤矿区开采沉陷遥感监测技术分析.地理与地理信息科学. 2004, 20(2): 22-25

[238] 艾建文,吴立新.殷作如,李玉明.基于WebMGIS的矿山安全实时监测集成系统及其应用.地理与地理信息科学. 2004, 20(2): 41-44

[239] 陈学习,吴立新,史文中,王彦兵,李鲲杨. GTP模型中对角线引入的最小顶点标识(SVID)法.地理与地理信息科学. 2004, 20(3): 17-21

[240] 吴立新,姜云,梁越,徐磊, 陈学习,祝文君.城市地下空间开发利用容量评估的基础研究.地理与地理信息科学. 2004, 20(4): 44-47

[241] 贾晓林,吴立新,王彦兵.二维Delaunay三角网局部更新:点插入与点删除.地理与地理信息科学. 2004, 20(5): 28-31

[242] 王彦兵,吴立新,史文中,贾晓林.约束Delaunay三角网点删除的一体化凸耳消元法(IEE).地理与地理信息科学. 2004, 20(6):31-34

[243] 吴立新,郝海森,殷作如.基于钻孔点集Voronoi图的矿产储量新算法.地理与地理信息科学. 2004, 20(1): 57-59

[244] 吴立新,殷作如,钟亚平.再论数字矿山:特征,框架与关键技术.煤炭学报, 2003, 28(1):1-7(EI)

[245] 吴立新,史文中, Christopher G. M. 3D GIS与3DGMS中的空间构模技术.地理与地理信息科学. 2003,19(1):5-11,被引232

[246] 郝海森,吴立新.基于强约束Delaunay-TIN的三维地学模拟与可视化.地理与地理信息科学. 2003,19(2):15-18

[247] 杨可明,吴立新,陈书琳,王彦兵.煤矿矿图的GIS管理、更新与共享.地理与地理信息科学. 2003,19(2):42-43

[248] 吴立新,史文中.基于QuaPA的无边界GIS与全球空间数据编码新方法.地理与地理信息科学. 2003,19(5): 1-5

[249] 王彦兵,吴立新,史文中. GTP模型中四面体的引入及其空间模型扩展.地理与地理信息科学. 2003,19(5): 16-19

[250] 吴立新,陈学习,史文中.基于GTP的地下工程体与围岩一体化真三维空间构模.地理与地理信息科学. 2003,19(6):1-6

[251] 吴立新,沙从术.真三维地学模拟系统与水利工程应用.南水北调与水利科技. 2003,1(2): 20-25

[252] 姜云,吴立新.中国煤炭城市生态环境问题及规划对策.辽宁工程技术大学学报. 2003, 22(3): 427-429

[253] 姜云,吴立新.中国煤炭城市生态环境评价指标体系的构建.中国矿业. 2003, 12(3): 23-25

[254] 吴立新.矿山测绘的未来发展.矿山测量. 2003(3):39-43

[255] 刘善军,吴立新,吴育华,李永强.受载岩石红外辐射的影响因素及机理分析.矿山测量. 2003(3): 67-70

[256] 齐安文,吴立新.基于类三棱柱的三维地质模拟与拓扑研究.矿山测量. 2003(3): 65-66

[257] 候恩科,吴立新,刘宏军.不同精度地质模型覆岩采动破坏过程的比较分析.矿山测量. 2003(3): 25-27

[258] 张文胜,吴立新. GIS的大比例尺数字测图方法分析与改进.辽宁工程技术大学学报. 2003, 22(5): 599-602

[259] 吴立新.西北矿业开发与水资源矛盾分析及其对策.南水北调与水利科技. 2003,1(1):35~37被引27次

[260] 陈国良,吴立新,李秋,韩国建,应雯.组件式GIS及其在房地产信息查询系统开发中的应用.北京电子科技学院学报. 2003, 11(1): 27-32

[261] Wu LX, Liu SJ, Wu YH, Wu HP. Changes in Infrared Radiation with Rock Deformation.Int J Rock Mech & Mining Sci., 2002,39(6): 825~831 (SCI-2, EI)

[262] 苏辉,吴立新,陆镇虹,王金庄. GIS技术在电信领域中的应用及应解决的问题.电信科学, 2002, 18(2): 28-31

[263] 吴立新,张瑞新,戚宜欣,齐安文,李冰.三维地学模拟与虚拟矿山系统.测绘学报, 2002, 31(1): 28-33

[264] 苏辉,吴立新,陆镇虹,王金庄.基于GIS和ES的光纤接入网规划系统的设计和实现.地理学与国土研究. 2002, 18(1): 19-22

[265] 齐安文,吴立新,李冰,李建民,杨中东.一种新的三维地学空间构模方法-类三棱柱法.煤炭学报, 2002, 27(2): 158-163(EI)

[266] 姜云,吴立新.论煤炭城市可持续发展的制约因素及策略.中国矿业, 2002, 11(2): 43-46

[267] 侯恩科,吴立新,李建民,吴育华,邓智毅,刘宏军.三维地学模拟与数值模拟的耦合方法研究.煤炭学报, 2002,27(4):388-392

[268] 刘善军,吴立新,吴焕萍,吴育华,程涛,李国华.多暗色矿物类岩石单轴加载过程中红外辐射定量研究.岩石力学与工程学报, 2002,21(11):1585-1589(EI)

[269] 吴立新,刘善军,吴焕萍,吴育华.地震红外遥感实验的热像处理系统与关键技术.红外技术, 2002, 24(4):27-31

[270] 侯恩科,吴立新,面向地质建模的三维体元拓扑数据模型研究.武汉大学学报(信息科学版), 2002,27(5):467-472(EI)

[271] Wu LX, Wu HP, Li GH. Experimental Explore to Thermal Infrared Imaging for Detecting the Transient Process of Solid Impact.Chinese Science Bulletin, 2001, 46(10): 872-877 (SCI -4)

[272] 吴立新,李国华,吴焕萍.热红外成像用于固体撞击瞬态过程监测的实验探索.科学通报, 2001, 46(2):172-176

[273] 吴立新,齐安文,杨可明,胡东宏,王彦兵.矿山GIS(TT-MGIS2000)简介及其关键技术.矿山测量,2001(1):5-8

[274] 吴立新.遥感岩石力学及其新近进展与未来发展.岩石力学与工程学报, 2001, 20(2):139-146(EI)

[275] 齐安文,吴立新,侯恩科,杨可明.三维地学模拟述评及其矿山应用关键问题.中国矿业, 2001, 10(5):61-64

[276] 齐安文,吴立新,杨可明,胡东宏.矿山地理信息系统(TT-MGIS2000)图形数据组织研究.煤田地质与勘探. 2001, 29(6):12-14

[277] Wu LX, Cui CY, Geng NG, Wang JZ. Remote sensing rock mechanics (RSRM) and associated experimental studies.Int J Rock Mech & Mining Sci,2000, 37(6):879-888(SCI-2, EI)

[278] 吴立新,殷作如,邓智毅,齐安文,杨可明.论21世纪的矿山——数字矿山.煤炭学报, 2000, 25(4): 337-342(EI)

[279] 吴立新.数字地球、数字中国与数字矿山.矿山测量,2000(1):6-9

[280] 陈桂茹,吴立新,刘纯波,崔志琳. MGIS地图符号库的面向对象设计与改进.测绘通报, 2000(4): 4-9

[281] 郝延锦,吴立新,胡金星.厚松散层条件下地表移动变形预计理论研究.矿山测量, 2000(2):24-26

[282] 吴立新,侯恩科.西北五省(区)矿产资源开发与水资源保护对策.西安科技学院学报, 2000,20(增):63-67

[283] 郝延锦,吴立新,陈胜华.岩移参数的统计规律和影响因素.煤矿安全, 2000(5)

[284] 侯恩科,吴立新.三维地学模拟几个方面的研究现状与发展趋势.煤田地质与勘探, 2000, 28(6): 5-7(EI)

[285] 吴立新,刘纯波,陈桂茹,崔志玲.地图符号库的面向对象技术与引用接口设计.矿山测量,1999(1):32-35

[286] 陈桂茹,吴立新,刘纯波,崔志琳. MGIS中矿图符号库的设计与软件实现.矿山测量,1999(2):8-10

[287] 崔志琳,吴立新,刘纯波,陈桂茹,胡金星. OODB技术在矿业GIS中的应用研究.中国矿业,1999,8(4): 62-66

[288] 胡金星,吴立新,杨可明,齐安文,苏辉.三维地学模拟体视化技术应用研究.煤炭学报,1999,24(4):345-349(CSCD收录)

[289] 吴立新,崔志玲,刘纯波,陈桂茹.矿业GIS空间数据在TITAN中的组织应用.遥感信息,1999(3):35-39

[290] 郝延锦,吴立新,沙从术,孟召平,胡金星.放顶煤开采条件下覆岩移动规律的试验研究.矿山测量,1999(4):6-9

[291] 胡金星,吴立新,齐安文,杨可明,沙从术,陈桂茹,胡东宏.矿业信息的分类编码研究.矿山测量,1999(4):39-41

[292] 郝延锦,吴立新,胡金星.采动过程中离层出现的机理研究.煤炭技术, 1999(6)

[293] Wu LX, Wang JZ. The features of infrared thermal image and radiation temperature of coal rocks loaded.Science in China (Earth Science), 1998,41(2):158-164(SCI,EI)

[294] Wu LX, Wang JZ. Infrared Radiation Features of Coal and Rocks under Loading.Int J Rock Mech & Mining Sci, 1998, 35(7):969-976(SCI-2, EI、GeoREF)

[295] 吴立新,王金庄.煤岩损伤扩展规律的即时压缩SEM研究.岩石力学与工程学报, 1998, 17(1): 9-15(EI、CSCD)

[296] 吴立新,王金庄.煤岩受压红外热像与辐射温度特征实验.中国科学(D辑), 1998,28(1):41-46(CSCD收录)

[297] 吴立新,洪开榆,程海丰,康永成.论我国煤矿区的水资源状况及其科学保护.煤矿环境保护, 1998(2):16-18

[298] 吴立新,刘纯波,牛本宣,李松明.试论发展我国矿业地理信息系统的若干问题.矿山测量,1998(4):48-51

[299] Wu LX, Qian MG, Wang JZ.The Influence of A Thick Hard Rock Stratum on Underground Mining Subsidence.Int J Rock Mech & Mining Sci,1997, 34(2):341-344,(SCI-2, EI)

[300] Wu LX, Wang JZ. Infrared Thermal Image Study on The Forewarning Message of Coal & Sandstone Failure under Load. J of Coal Sci. & Eng (China),1997, 3(2):15-23

[301] 吴立新,王金庄.煤柱宽度的计算公式及其影响因素分析.矿山测量,1997(1):12-16

[302] 吴立新,王金庄,解景全.解决开采沉陷造成矿区土地破坏的未来对策与MGIS技术.中国煤炭,1997(2):21-23

[303] 谢纯良,吴立新,金学林.基于CAD的等高线遇地物自动断开新方法研究.矿山测量,1997(3):3-6

[304] 吴立新,王金庄,孟顺利.煤岩流变模型与地表二次沉陷研究.地质力学学报,1997, 3(3):29-35

[305] 吴立新,王金庄.煤岩受压屈服的热红外辐射温度前兆研究.中国矿业,1997,6(6):42-48

[306] 吴立新,王金庄.煤岩流变特性及其微观影响初探.岩石力学与工程学报,1996,15(4):328-332(CSCD)

[307] 吴立新,王金庄,梁越.中国煤矿环境挑战及战略对策.中国煤炭,1996(10):15-17

[308] 吴立新,王金庄.煤柱屈服区宽度计算及其影响因素分析.煤炭学报, 1995, 20(6):625-631 (EI、CSCD)

[309] 王金庄,吴立新,廖常铭,肖玉仁.芙蓉矿区山区岩层与地表移动及村舍下采煤研究.中国矿业大学学报, 1995, 24(2):52-58

[310] Wu LX, Wang JZ, Zhao XS, Li BS.Strata and Surface Subsidence Control in Strip-Partial Mining Under Buildings.Journal of China University of Mining & Technology, 1994, 4(2):74-85

[311] 王金庄,吴立新,胡世彬,王卫东.山区不同类型房屋的采动损害特征及综合防治措施.世界煤炭技术,1994(1):17-21

[312] 吴立新,李保生,王金庄,邢安仕.重复条采时上覆煤柱应力变化及其稳定性的研究.煤矿开采,1994(2):37-40

[313] 课题组(吴立新执笔).近距煤层群条带开采煤柱稳定性及覆岩与地表移动观测研究.煤矿开采,1994(2):34-37

[314] 吴立新,黄绍东,胡世彬,王卫东.山区厚硬覆岩条件下采动损害特征.水文地质工程地质, 1994(3):35-38 (俄罗斯文摘)

[315] 吴立新,王金庄.连续大面积开采托板控制岩层变形模式的研究.煤炭学报, 1994,19(3):233-241(CSCD)

[316] 吴立新,王金庄,赵士胜,肖玉仁,胡世彬.托板控制下开采沉陷的阶段性和板裂性.矿山测量,1994(4):29-32

[317] 吴立新,王金庄,赵士胜,肖玉仁,胡世彬.托板控制下开采沉陷的滞缓与集中现象研究.中国矿业大学学报, 1994,23(4):10-19

[318] 吴立新,王金庄,邢安仕.块段开采时覆岩与地表沉降模式及其应用.煤炭学报, 1993, 18(1):33-40(CSCD)

[319] 吴立新,王金庄,邢安仕.块段开采时上覆厚岩层对地表沉降的影响.矿山测量,1993(1):32-35

[320] 吴立新,王金庄,邢安仕,彭增甫,李保生.条带开采覆岩移动及托板控制的试验研究.世界煤炭技术,1993(6):33-38

[321] 陈于恒,章毛平,吴立新.煤矿床经济评价中的煤价问题研究.煤炭经济研究, 1991(3):16-21

(2)国际会议论文

[1] Wu LX, Mao WF, Ma WY, Zhen S. Visual Analysis on Tidal Triggering Earthquake the 2011 M9.0 Tohoku-Oki Earthquake Being a Case. EGU General Assembly 2017, Poster-P2017

[2] Wu LX, Mao WF, Huang JW, Liu SJ, Xu ZY. Features of Changed Microwave Radiation from Loaded Rock in Elastic Phase. EGU General Assembly 2017, Poster-P2017

[3] Hu WM, Wu LX*. Ground deformation extraction using visible images and Lidar data in mining area. The Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XLI-B7, 2016, XXIII ISPRS Congress, 505-512

[4] Wu LX, Qin K, Tan K, et al. China MAESTRO Program and Primary Experiments. Proc. of ISM 2015, Beijing

[5] Guo JT, Jiang JZ, Wu LX, Zhou WH, Wei LH. 3D modeling for mine roadway from lasers canning point cloud. IEEE IGARSS 2016, 4452-4455 (EI)

[6] Zhang W, Zhang DS, Wu L X, and Wang XF. The Processes of three natural decay series in underground strata and their common characteristics.

[7] Zhang W, Zhang DS, Wu LX, and Wang XF. Numerical simulation on dynamic development features of mining-induced fractures in overlying strata during shallow coal seam mining.2016

[8] Xu ZH, Wu LX, Wang QL, Wang R, Li FS. Extraction of Damaged Building's Geometric Features from Multi-Source Point Clouds, IEEE IGARSS 2014, Quibec (EI)

[9] Jiang JC, Wu LX*. A Re-optimization Dynamic Shortest Path Algorithm for Vehicle Navigation. IGARSS 2014(EI)

[10] Yu JQ, Wu LX, He LM. Rpresentation on the Variation of Earth System Phenomen based on SDOG-ESSG: Ionosphere as An Example. IEEE IGARSS 2014, Quibec (EI)

[11] Wang QL, Wu LX*, Xu ZH, Tang H. A Progressive Morphological Filter For Point Cloud Extracted From UAV Images. IEEE IGARSS 2014, Quibec (EI)

[12] Qin K, Wu LX, Zheng S, Bai Y, Lv X. Abnormal Enhancement of Atmospheric Aerosol before The 2008 Wenchuan Earthquake. IEEE IGARSS 2014, Quibec (EI)

[13] He LM, Wu LX, Liu SJ, and Su C. Landslide Displacement Monitoring Using Multi-aperture InSAR and D-InSAR. PIERS 2014 (EI)

[14] Liu SJ, Xu ZY, Wu LX, and Tang B. Theoretical Analysis and Experimental Verification of Microwave Radiation Features of Fractured Rock. PIERS 2014 (EI)

[15] Liu XJ, Liu SJ, and Wu LX. Study on Microwave Radiation Variation of Typical Ground_abstract. PIERS 2014 (EI)

[16] Xu ZH, Wu LX*, Chen SJ, Wang R, Li FS, Wang QL. Extraction of image topological graph for recovering the scene geometry from uav collections. The Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4, 319-323, 2014

[17] Wang QL, Wu LX* , Chen SJ, Shu DF, Xu ZF, Li FS, Wang R. Accuracy Evaluation of 3D Geometry from Low-Attitude UAV Images: A Case Study at Zijin Mine. The Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4, 297-300, 2014

[18] Li ZF, Wu LX, Zhang ZX. Basin division method for tin surface based on face-point-edge flow confluence. 35th ISRSE, 2013, Beijing.

[19] Wu LX, Yu JQ and Bao HG. Mapping Planet Earth in ESSG: CTA Model and Global Spatial Data Visualization. The 12th Int. Conf. GeoComputation, May 23-25, 2013, Wuhan, China

[20] Jiang JC, Wu LX. A MPI Parallel Algorithm for the Maximum Flow Problem. The 12th Int Conf GeoComputation. May 23-25, 2013, Wuhan, China

[21] Xu ZH, Wu LX*, Wang Z, Wang R, Li ZF, Li FS. Matching UAV images with Image Topology Skeleton. IEEE IGARSS 2013, 546-549 (EI)

[22] Li ZF, Wu LX*, Zhang ZX, Xu ZH, Wang Z. Tiangular-Prism-based Algoritjms on Urban Flood Inundulation Simulation by Employing Dichotomy Numerical Solution. IEEE IGARSS 2013, 790-793 (EI)

[23] Wu LX, Yu JQ, Yang YZ, et. al., Spatial big data organization, access and visualization with ESSG. Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4/W2, 2013, P51-56

[24] Yu JQ, Wu LX*, Jia YJ. ESSG-based global spatial reference frame for datasets interrelation. Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4/W2, 2013, P57-62

[25] Yang YZ, Wu LX*, and Yu JQ. Managing the Global Dataset in Block-index based on ESSG. Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4/W2, 2013, P63-69

[26] He LM, Yang YZ, Su C, Yu JQ, Yang F, and Wu LX. Grid-based representation and dynamic visualization of ionospheric tomography. Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4/W2, 2013, P71-76

[27] Bo HG, Wu LX, Yu JQ, Yang YZ, and Xie L. Rapid visualization of global image and dem based on SDOG-ESSG. Int. Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Volume XL-4/W2, 2013, P102-105

[28] Yang YZ, Wu LX, Guo JT, Liu SJ. Research on Distributed Hilbert R tree Spatial Index Based on BIRCH Clustering. The 20th Int Conf Geoinformatics, Hong Kong, China. 15-17 June, 2012 (EI, ISTP)

[29] Guo JT, Wu LX, Yang YZ, Zhang RB. Towards a Seamless Integration for Spatial Objects and Topography. The 20th Int. Conf. Geoinformatics, Hong Kong, China. 15-17 June, 2012(EI, ISTP)

[30] Shen YL, Di LP, Wu LX, et al. Hidden Markov Models for corn progress percents estimation in multivariate time series. The 1st Int Conf Agro-Geoinformatics, 2012

[31] Yu JQ, Wu LX, Li XQ, Wang H. Earth System Scientific Data Sharing Mode based on AdaptableS Global Spatial Grid. IEEE IGARSS 2012, Munich, Germany, 554-557

[32] Wang Z, Xu BS, Wu LX, Shen YL, Li ZF, Li HY. Geohazards Observation and Natural Disaster Assesment in China. IEEE IGARSS 2012, Munich, Germany , 950-953

[33] Liu SJ, LiuX, Ma YT, Wu LX. Microwave Radiation Anomaly of Yushu Earthquake And Its Mechanism. IEEE IGARSS 2012, Munich, Germany , 1192-1195

[34] Qin K, Wu LX, SJ, AD Santis, G Cianchini. Mechanisms and relationship to soil moisture of surface latent heat flux anomaly before inland earthquakes. IEEE IGARSS 2012, Munich, Germany, 1196-1199

[35] Wu LX, Kai Qin, Liu SJ, AD Santis, G Cianchini. Importance of lithosphere-coversphere-atmosphere coupling to earthquake anomaly recognition. IEEE IGARSS 2012, Munich, Germany , 3532-3535

[36] He LM, Wu LX, S Pulinets, Liu SJ . Short Timescale Variation in Ionosphere Caused by Irregular Solar Electromagetic Radiation. IEEE IGARSS 2012, Munich, Germany, 3540-3543

[37] Qin K, Wu LX锛孡iu SJ. Multi-Parameter Analysis Method for Earthquake Anomaly Recognition Refering to Lithosphere-Coversphere-Atmosphere (LCA) Coupling. The 33-rd General Assembly of European Seismological Commission , Moscow, 2012

[38] Yu JQ, Wu LX, Li XJ. Global Seismic Data Share Method based on Adaptable Global Spatial Grid. The 33-rd General Assembly of European Seismological Commission , Moscow, 2012

[39] He LM, Wu LX, Liu Sj, Ma BD. Seismo-ionospheric anomalies detection based on integrated wavelet. IEEE IGARSS 2011, Vancover, Canada, 1834-1837 (EI)

[40] Ma YT, Liu SJ, Wu LX, Ma BD. A new method to extract and analyze abnormal phenomenon of earthquake from remote sensing information. IEEE IGARSS 2011, Vancover, Canada, 2208-2211 (EI)

[41] Qin K, Wu LX, Guo GM. Multi-parameters thermal anomalies before New Zealand MS7.0 earthquake. IEEE IGARSS 2011, Vancover, Canada, 2496-2499 (EI)

[42] Liu SJ, Ma YT, Wu LX. Microwave radiation anomaly of Wenchuan earthquake and its mechanism. IEEE IGARSS 2011, Vancover, Canada, 2500-2503 (EI)

[43] Guo JT, Zhang RB, Wu LX, Yang YZ. An automatic method for generating curvilinear geological section with stratal pinch-out. IEEE IGARSS 2011, Vancover, Canada, 2965-2968 (EI)

[44] Guo JT, Yang YZ, Wu LX, Zhang RB. A novel method for modeling complex 3D geological body with stratal pinch-out. IEEE IGARSS 2011, Vancover, Canada, 4204-7, 2011 (EI)

[45] Liu SJ, Wu LX, Ma BD, Liu X. Infrared imaging detection of hidden danger in mine engineering. PIERS 2011, Suzhou, p 125-129 (EI)

[46] Shuang JL, Liu SJ, Wu LX, Li Qi, Zhuo JY. Leaf area index inversion based on ground passive microwave measurement experiment. PIERS 2011, Suzhou p 1374-1378 (EI)

[47] Wu LX, Yu JQ. A new Digital Earth reference model: Spheroid-based 3D grid for Earth System锛?DGES锛? The 6th ISDE Proc. of SPIE, 2010, Vol. 7840, 784003-1~6 (EI)

[48] Wang Z, Li HY, Wu LX. Geodesics-based topographical feature extraction from airborne lidar data for disaster management. The 18th International Conference on Geoinformatics, Geoinformatics 2010 (EI)

[49] Shen YL, Wang Z, Wu LX. Identification of inclined buildings from aerial LIDAR data for disaster management. The 18th International Conference on Geoinformatics, Geoinformatics 2010 (EI)

[50] Wang Z, Li HY, Wu LX. QEM-based simplification of building footprints from airborne LiDAR data. IEEE IGARSS2010, 1186-1189(EI)

[51] Shen YL, Wang Z, Wu LX. Extraction of Building's Geometric Axis Line from LIDAR Data for Disaster Management. IEEE IGARSS 2010, 1198-1201(EI)

[52] Guo JT, Wu LX, Yang YZ. Regular hexahedron tessellation algorithm for 3D complex entity models with inside cavities. IEEE IGARSS 2010, 4015-4018 (EI)

[53] Ma YT, Zhao YY, Liu SJ, Wu LX. Possible Abnormal Phenomenon of the Atmospheric Water Vapor before Hengchun Earthquake. PIERS ONLINE, 2010, 6(1): 21-25

[54] Shen YL, Wu LX, Li XJ, Li ZF. 3D Visualization of Seismic Buildings in Yushu Earthquake for Disaster Management. International Conference on Multimedia Technology. 2010, p1217-1220 (EI)

[55] Li ZF, Wu LX, Yu JQ, Wang Z, Liu CB. GIS-based Rapid Loss Assessment on Flood Disaster: June 21 Flood of Fuhe Basin being A Case. Proc. of the 2nd Int. Conf. Information Science & Eng., 2010. 12, Vol.9: 6642-45(EI)

[56] Wu LX, Li JP, Liu SJ. Space Observed Two Abnormal Linear Clouds before Wenchuan Earthquake.The 3rd IASME/WSEAS Int. Conf. GEOLOGY & SEISMOLOGY. Cambridge, UK, Feb 24-26, 2009, p138-143

[57] Yu JQ, Wu LX. Spatial Subdivision and Coding of a Global 3D Grid: Spheroid Degredated-Octree Grid. IEEE IGARSS2009, South African, v 2, p II361-II364(EI)

[58] Liu SJ, Cui LH, Wu LX, Wang Z. Analysis on the water vapor anomaly before Wenchuan earthquake based on MODIS data. IEEE IGARSS2009, South African, v 2, p II412-II415(EI)

[59] Wang Z,Wu LX. Automated Extraction of Building Geometric Features from Raw LiDAR Data. IEEE IGARSS2009, South African, v 2, p II436-II439(EI)

[60] Che DF, Wu LX, Yin ZR. 3D Spatial Modeling for Urban Surface and Subsurface Seamless Integration. IEEE IGARSS2009, South African, v 3, p III392-III395(EI)

[61] Ma BD, Wu LX, Liu SJ. Remote Sensing Monitoring for Vegetation Change in Mining Area Based on SPOT-VGT NDVI. IEEE IGARSS2009, South African, v 3, p III428-III431(EI)

[62] Guo JT, Wu LX. 3D digital topological relationship analysis for spatial entity with fuzzy boundary. IEEE IGARSS2009, South African, v 5, p V60-V63(EI)

[63] Ma BD, Wu LX, Liu, SJ. Analysis to Shenyang urban expansion by using multi-source remote sensing images. Joint Urban Remote Sensing Event, 2009(EI)

[64] Guo JT, Wu LX, Ma HB, Che DF. K-ORDER-BASED TOPOLOGICAL RELATIONS OF GEO-ENTITIES IN 3D RASTER SPACE. ISPRS Congress 2008, Beijing, Vol. XXXVII, Part B6b, p.265-268

[65] Ma BD, Wu LX, Liu SJ. Remote Sensing Detection for Subsidence-Resulted Water Body and Solid-Waste Dump in Coal Mine: Yanzhou Coal Mining Area Being a Case. ISPRS Congress 2008, Beijing, Vol. XXXVII, Part B6b, p.269-272

[66] Che DF, Wu LX, Yin ZR. Multi-scale Spatial Modeling for Geological Body Based on GTP Model. ISPRS Congress 2008, Beijing, Vol. XXXVII, Part B2-2. p.899-904

[67] Guo JT, Wu LX. A Topological Analysis Method for 3D Geo-Entities Structured as Hexahedron Tessellations. The 3rd International Workshop on 3D Geo-Information. Seul, Korea, 2008, P.355-360

[68] Wu LX, Li JP, Xu XD, Liu SJ, Dong YQ. Theoretical Analysis to Impending Tectonic Earthquake Warning Based on Satellite Infrared Anomaly. IEEE IGARSS 2007, p 3723-3727

[69] Li JP, Wu LX, Dong YQ, Liu SJ. Quantitative Analyzing Model for Tectonic Activity based on Satellite Thermal Infrared Anomaly. IEEE IGARSS 2007, p 3039-3042

[70] Xu L, Wu LX, Che DF, Jiang Y, Chen XX, Zhao YC, Li FH. DATA INTEGRATION FOR 3D CITY UNDERGROUND SPATIAL INFORMATION SYSTEM. INT SYM. ON URBAN DATA MANAGEMENT SYSTEM, Danmark, 2006, Chapter 9(II): 9-49~9-60

[71] Che DF, Wu LX, Chen XX, LV XJ, Guo M. 3D Urban Geological Modeling and Its Application in CBD Beijing. INT SYM. ON URBAN DATA MANAGEMENT SYSTEM, Danmark, 2006, Chapter 8(V):8-145~8-153

[72] Che DF, Wu LX, Chen XX, et al. Application of three-dimensional modeling and simulation in studying gas explosion in coal mine. The 5th Intl Sym Safety Science and Tech., Oct 24-27, 2006 Changsha CHINA. Vol 6(A,B): 1672-1675 (ISTP)

[73] Li Q, Wu LX. Research on image evidence in land supervision and GIS management. Geoinformatics 2006: GNSS and Integrated Geospatial Applications , Wuhan, V6418: 4181-4181 (ISTP)

[74] Wu LX, Liu SJ, Wu YH.The Experiment Evidences for Tectonic Earthquake Forecasting Based on Anomaly Analysis on Satellite Infrared Image. IEEE IGARSS 2006, p 2158-2162

[75] Guo DH, Wu LX, Wang JC, Zheng XW, Li Q. Use the GPS/IMU new technology for photogrammetric application. IEEE IGARSS 2006, p 1107-1110

[76] Guo DH, Wu LX, Li Q, Wang JC, Zheng XW. A comparison of direct georeferencing and GPS-supported at. IEEE IGARSS 2006, p 2919-2922

[77] Che DF, Wu LX, Xu L. Study on 3D Modeling Method of Faults Based on GTP Volume. IEEE IGARSS 2006, p1594-1597

[78] Xu L,Wu LX, Che DF, Cai ZF. The Formal Representation of Semantic on Stratum Attribute Data Oriented 3D Geo-Modeling, IEEE IGARSS 2006, p 899-902

[79] Wu LX, Wu YH, Shi WZ, et al. Comparisons of thermal radiation characteristics between rocks and PMMA subjected to free-fall impacts. Conference on Thermosense 2005, XXVII: 264-271

[80] Xu L, Wu LX, Chen XX, Che DF, Jiang Y. A Conceptual Model for 3D Subsurface Spatial Data Integration: the Integrated Information Voxel. IEEE IGARSS 2005, p 4 pp(EI, ISTP)

[81] Wu LX, Wang YB锛孲hi WZ, Jia XL. Point deletion for Dynamic Update of CD-TIN. IEEE IGARSS 2005, 870-873(EI, ISTP)

[82] Wu LX锛孼hong Sg, Wu YH. Fundamental Research on Remote Sensing the Strain and Catastrophe of Concrete under Uniaxial Compression. IEEE IGARSS 2005, p 1760-1763 (EI, ISTP)

[83] Li Q, Wu LX. Study on a sudden land subsidence in coal mining area using novel GLS techniques. IEEE IGARSS 2005, p 2438-2439

[84] Liu SJ, Wu LX. Study on mechanism of satellite IR anomaly before tectonic earthquake. IEEE IGARSS 2005, p 5060-5063

[85] Li Q, Wu LX, Chen BZ. The application research on subsidence monitoring of coal mining area with D-InSAR. IEEE IGARSS 2005, p 5216-5218

[86] Wu LX, Wang YB, Che DF, Xu L, Chen XX, Jiang Y, Shi WZ. An object-oriented 3D integral data model for digital city and digital mine. SPIE MIPPR 2005, v 6045, p 60452H (EI)

[87] Wu LX, Che DF, Xu L, Chen XX. Seamless excavating manipulation in a real 3D digital geological model based on GTP. DMGIS 2005, Britian

[88] Xu L, Wu LX, Che DF, Jiang Y. Foundation framework for city underground spatial data. ISPRS Workshop on Service and Application of Spatial Data Infrastructure. Hangzhou, 2005, XXXVI-4/W6: 171-176

[89] Wu LX, Jiang Y. On the index system for the land of coal mining goaf developing-utilization potential assessment. Proc. of the World Engineer Convention 2004, Shanghai, Nov.2-6, Vol.F-A, 267-272(ISTP)

[90] Wu LX, Li YQ, Liu SJ, Shi WZ, Wu YH. Gauss filtration based feature extraction for IR images analysis, Proc. SPIE 2003, Vol.5238: 496-503

[91] Wu LX, Liu SJ, Shi WZ, Wu YH, Li YQ. Experimental study on infrared abnormity of tectonic earthquake, Proc. SPIE 2003, Vol.5239: 376-387

[92] Hou EK, Wu LX. Influence Factors and Qualitative Evaluation for the Accuracy of 3D Geometric Geological Model. Proc. 2nd Int. Sym. on Spatial Data Quality. PolyU, HongKong, 2003.3, p. 314-319

[93] Wu LX. A Solution for Integral 3D Geosciences Modeling Based on the coupling of TEN, TIN and GTP. Workshop on Geocollaboration, HongKong PolyU, 2003.9

[94] Wu LX, Chen XX, Wang YB, Li KY. 3D Geosciences Modeling And An Universal GTP model for Geology, Mining and Civil Engineering. Int. Workshop on Virtual Geographical Environment. 2003.11, HongKong

[95] Wu LX. A Generalized Tri-Prism Model for 3D Geosciences Modeling and Topological Description. Workshop on Advanced GIS. Hongkong, PolyU, 2002.9

[96] Wu LX, Hou EK. A new method for mining influence based on fine geologic model. In Xie Heping edited: Computer Applications in The Minerals Industry_APCOM001, Belkema, 2001, p. 731-734 (EI, ISTP)

[97] Qi AW, Wu LX, Yang KM, Hu DH, Hu JX. Development and Application of Mine Geographical Information System. In Xie Heping edited: Computer Applications in The Minerals Industry_APCOM001, Belkema, 2001, p. 825-828 (EI, ISTP)

[98] Wu LX, Hou EK, Tang CA. Geological Data Organization for FEM Based on 3D Geoscience Modeling. Proc. 3rd Int. Symposium on DMGIS, Bankou, 2001.6, p.323-325

[99] Wu LX, Cui CY, Wu HP, Liu QH. TIR Remote Sensing for Earthquake Predication: Experiment and Satellite Image Process. The 2nd Int. Sym on Digital Earth, Fredericton, 2001(Oral)

[100] Liu CB, Wu LX, Li Q, Hu JX, Yang KM, Hu DH. Digital earth oriented Geo-Spatial data structure and organization. Proc. 9th Int. Sym on Spatial Data Handling. Beijing, 2000.8, p. Section 8b-3

[101] Wu LX, Wang JZ. Infrared Radiation Detection: A Potential RS Technique for Ground Pressure. Proc. of Mining Science and Technology鈥?9. Beijing, 1999.8, p.361-364 (EI, ISTP)

[102] Wu LX, Hu JX, Xie CL. A ID-coding method containing quadrant label for non-boundary 3DGIS. Proc. of Joint ISPRS Commission Workshop on Dynamic And Multi-Dimensional GIS. Beijing, 1999.10, p.105-108

[103] Wu LX, Liu CB, Chen GR. Cui ZL, Hu JX. The research and development of networked Mining Core-GIS. Proc. of Joint ISPRS Commission Workshop on Dynamic And Multi-Dimensional GIS. Beijing, 1999.10, p.359-364

[104] Wu LX, Yang KM, Qi AW, Hu DH, Deng ZY, Liu HJ. Information Classification & Management For MGIS And Digital Mine. T Towards Digital Earth?__Proc. of Int. Sym. on DE, Beijing, 1999.11, p. 999-1004

[105] Hu JX, Wu LX, Yin ZR, Qi AW, Yang KM, Liu CB. Study on Digital Mine And Related Key Technologies. Towards Digital Earth?__Proc. of Int. Sym. on DE, Beijing, 1999.11, p. 421-426

[106] Liu CB, Wu LX, Li Q, Hu JX, Yang KM, Hu DH. Object-Relational Data Structure And Organization of Massive Geo-Spatial Data. Towards Digital Earth?__Proc. of Int. Sym. on DE, Beijing, 1999.11, p. 196-201

[107] Wu LX, Meng SL. Land Damage Due to Coal Mining in China And The Future Countermeasures And MGIS Support. Xth Int. Congress of ISM. Australia, 1997.11, p. 791-799

[108] Wu LX, Wang JZ, Huang GJ. The Classification of Mining Subsidence in China and The Calculation of 3-D Surface Deformation. Proc. the 8th Int Sym of FIG on Deformation Measurements. Hongkong 1996.6, p.427-433

[109] Wu LX, Wang JZ. The Control Action of Overburden Thick Hard Rock Stratum to Ground Subsidence in the Condition of Block-Section Mining. Proc. of the 2nd Int. Sym.Min. Tech. & Sci., Xuzhou, China,1991: 307

[110] Wang JZ, Wu LX. Mechanism and Maximum Prediction Method of Surface Subsidence in the Condition of Block-Section Mining. Proc. of the 2nd Int Sym Min. Tech. & Sci., Xuzhou, China, 1991, p. 232-241 (EI)


科研项目

[1] 面上项目:城市地下空间资源多尺度三维动态评价的模型与方法研究(2020-2023)

[2] 国家自然科学基金(重点项目):含过氧缺陷的岩石大试件微波介电与微波辐射受力变化规律(2020-2023)

[3] 中南大学领军人才项目:地灾协同感知与灾变过程认知(2017-2021)

[4] 国家科技部863重点课题:“地理空间计算并行算法与中间件”(2011-2015)

[5] 北京市自然科学基金重点项目:“城市城区内涝模拟推演方法与隐患分析模型研究”(2011-2013, 40万)国家科技部973课题:“事件驱动的空天地多传感器协同观测方法”(2011-2015)

[6] 国家自然科学基金重点课题:“地球系统三维格网与中-大尺度对象表达研究”(2010-2013)

[7] 国家减灾委/民政部重大项目:“环境与灾害监测预报小卫星星座减灾应用系统:灾情评估分系统灾情与救灾效益综合评估软件包”(2008-2012)

[8] 国家863高技术课题:“地上下无缝集成的三维空间数据模型与关键技术”(2007-2009)

[9] 国家杰出青年基金课题:“基于3S集成应用的数字矿山理论与关键技术”(2006-2009)

[10] 国家自然基金课题面上项目:“真三维地学建模实体无缝表达与拓扑描述研究”(2006-2008)

[11] 北京市自然科学基金重点项目:“北京城市地下空间开发利用容量评估的基础研究”(2004-2006)

[12] 武汉大学测绘遥感信息工程国家重点实验室开放基金课题:“煤矿区开采沉陷D-InSAR监测与数据处理研究”(2004-2006)

[13] 中国科学院武汉岩土力学研究所领域前沿基金项目:“岩石、混凝土应变与灾变遥感遥测的基础研究”(2003-2005)

[14] 国家自然科学基金课题面上项目:“岩石撞击的热辐射特征及其反演问题”(2002-2004年)

[15] 教育部第三届“高校青年教师奖”支持专项:“21世纪数字矿山的关键理论与技术:3S应用与集成”(2002-2006年)

[16] 教育部全国优秀博士学位论文专项基金项目:“岩石、混凝土应力与灾变遥感遥测的基础理论与实用技术”(2001-2005)

[17] 北京市自然科学基金重点项目:“岩石剪切红外成像实验及首都圈地震遥感预报基础研究”(2000-2003)

[18] 教育部博士点基金项目:“矿山岩石受力的红外辐射规律及其遥感研究”(1999-2001)

[19] 国家自然科学基金面上项目:“利用3DGM和3DGIS改良有限元前后处理的研究”(1999-2001)

[20] 煤炭部重点项目:“厚冲积层下放顶煤开采地表沉陷规律及其影响特征的模拟研究”(1997~2000)

[21] 煤炭科学基金项目:“矿区Q系含水砂层失水压缩机理与地表沉陷研究”(1996-1999)

[22] 煤炭部优秀青年基金项目:“煤柱强度的微观机理及其微裂隙扩展动态的研究”(1993-1996)


著作成果

[1] 吴立新, 邓浩, 赵玲, 李光强, 余介情. 空间数据可视化, 科学出版社,2019

[2] 李志峰,吴立新,《城市内涝淹没建模与过程模拟》,测绘出版社,2018

[3] 秦凯,吴立新.《地震遥感热异常时空分析方法与检验》.测绘出版社, 2016

[4] 余接情,吴立新.《地球系统空间格网技术》.测绘出版社,2014

[5] 史文中,吴立新,李清泉,王彦兵,杨必胜.《三维空间信息系统模型与算法》,电子工业出版社,2007

[6] 吴立新,刘善军,吴育华.《遥感岩石力学引论:岩石受力灾变的红外遥感》,科学出版社,2006

[7] 刘善军,吴立新.《岩石受力灾变的红外辐射》,冶金工业出版社,2005

[8] 吴立新,史文中.《地理信息系统原理与算法》,科学出版社,2003

[9] 吴立新,王金庄,郭增长.《煤柱设计与监测基础》,中国矿业大学出版社,2000

[10] 王金庄,邢安仕,吴立新.《矿山开采沉陷及其损害防治》, 煤炭工业出版社,1995

[11] 吴立新,王金庄,邢安仕,刘延安.《建(构)筑物下压煤条带开采理论与实践》,中国矿业大学出版社,1994

[12] 吴立新,王建峰.《工程岩体分类》(译著), 中国矿业大学出版社,1993


专利成果

(1)国家发明专利:

[1] 基于微波辐射计的大尺寸材料有效微波介电常数反演方法,( 202110124623X)

[2] 一种构建地表纯净微波辐射背景场的方法(202110403474.0)

[3] 滑坡体位移和姿态远距离快速监测报警装置及方法(ZL200910091967.4)

[4] 一种利用飞控数据的低空影像快速匹配方法(ZL201110026667.5)

[5] 一种利用影像拓扑骨架的无人机影像快速匹配方法(ZL201310264647.0)

[6] 一种实现地球空间三维格网剖分的方法(ZL200810114539.4)

[7] 一种基于三角形面片的汇水区划分方法(ZL 201210384805.1)

[8] 基于地理网络的最短路径并行双向搜索通信方法(ZL 201310006533.6)

[9] 一种矢量QR树并行索引技术(ZL201210586420.3)

[10] 一种网络最大流的并行求解方法(ZL201210574528.0)

(2)国家实用新型:

[1] 车载式矿区沉陷三维动态监测系统(ZL 2011 2 0023630.2)

[2] 一种无人机与地面激光扫描仪的联合标定装置(ZL201420410421.7)

(3)国家软件登记:

[1] 三维地学建模系统GeoMo3DV1.0(2005SRBJ1164)

[2] 城市地下空间资源评估系统CityUSES V1.0(2007SRBJ1418)

[3] 构造活动及地震遥感分析系统TAERSA V1.0,(2007SRBJ1738)

[4] 吉思三维地上下集成建模与应用系统Geos3D V1.0(2009SR053081)

[5] 基于NCEP数据的地震热红外遥感逐像元分析系统V1.0(2012SR043599)

[6] 城市暴雨内涝淹没模拟推演系统CityFlood V1.0(2013SR059703)

[7] 无人机影像拓扑分析系统ITA-UAV V1.0(2014SR011717)

[8] 无人机影像灾场三维重建系统DR3D-UAV V1.0(2014SR011721)

[9] 网络最大流并行计算中间件系统NMFPaC V1.0(2014SR014542)

[10] 地球系统三维建模与可视化系统ESSGrid V1.0(2014SR019034)

[11] 全球空间数据关联系统GASE V1.0(2014SR019042)

[12] 空间度量与方位关系并行计算中间件系统SMDPaC V1.0(2014SR004163)

[13] 空间拓扑关系并行计算中间件系统STPaC V1.0(2014SR004723)

[14] 矿区典型地物波谱库RoclSL操作软件 (2021SR0722724)

[15] 顾及下垫面地形的NCEP地震多参数层析软件[简称 NCEP多参数分析]V1.0(2021SR0716554)

[16] 地震及构造活动地表微波辐射异常提取与对比分析软件(2021SR0916095)


获奖信息

A.国家级

[1]“一种实现地球空间三维网格剖分的方法”,2021年中国专利优秀奖 (排名1)

[2] “国家电子政务协同式空间决策服务关键技术与应用”,2016年国家科技进步二等奖(2016-J-25201-2-01-R05) (排名5)

[3] 大型铁矿山露天井下协同开采及风险防控关键技术与应用,2014年获国家科技进步二等奖(2014-J-25202-2-04-R02)(排名2)

[4] 博士学位论文《煤岩强度机制及矿压红外探测基础实验研究》,2000年获国务院学位委员会“全国百篇优秀博士学位论文奖”

B.省部级

[1] “露天矿山环境与灾害空天地协同监测关键技术及应用”,2017年或中国测绘地理信息科技进步一等奖(排名2)

[2] “矿山采动灾害多源遥感关键技术与应用”,2012年获国家测绘地理信息局中国测绘科技进步一等奖(排名1)

[3] “地矿三维空间建模与数字矿山应用关键技术”,2012年获国家测绘地理信息局中国GIS科技进步一等奖(排名1)

[4] “矿山地质灾害集成探测技术及应用”,2012年获江苏省科技进步二等奖(排名2)

[5] “煤矿井上下多维集成建模技术及应用”,2012中国煤炭工业科学技术二等奖(排名3)

[6] 《三维空间信息系统模型与算法》, 2008年新闻出版总署第二届“三个一百”原创出版工程(排名2)

[7] “岩石受力红外辐射变化规律与机理”,2007年获教育部自然科学一等奖(排名1)

[8] “三维复杂空间目标集成建模关键技术与应用”,2006年获教育部科技进步一等奖(排名2)

[9] 《建(构)筑物下压煤条带开采理论与实践》,2000年获国家煤炭工业局科技进步二等奖(排名1)(1995年获国家教委第二届全国高等学校出版社优秀学术著作优秀奖)

[10] “条带开采优化设计及其地表沉陷托板控制技术”,2000年获教育部科技进步二等奖(排名1)

[11] “芙蓉矿务局杉木树矿山区岩层与地表移动及村舍下采煤研究”,1995年月获四川省科技进步三等奖(排名2)

[12] “峰峰矿区建筑物下条带开采试验研究”,1994年获煤炭部科技进步三等奖(排名3)


研究领域

[1] 遥感科学与技术:面向地灾感知认知及地应力卫星遥感,重点研究固体地球对象暨岩石受力辐射变化规律与机理、地表盖层对辐射传输的影响特征,丰富和发展遥感-岩石力学及应用。

[2] 地球空间信息学:面向地矿岩土与城市真三维建模及地球系统空间数据集成共享,重点研究自适应三维建模方法、地球系统空间格网与大数据融合技术,丰富和发展三维地学建模及应用。

[3] 矿山测量与数字矿山:面向矿山绿色、安全与智能开采,重点研究矿区环境灾害多源遥感与协同观测技术、数字矿山与智能矿山理论及关键技术,丰富和发展矿山测量新理论新技术。