一分赛车6码选号必中

同自然灾害抗争是人类生存发展的永恒课题。
——————习近平

李永生

姓名:

李永生

性别:


职称:

研究员

学位:

博士

电话:

010-62846746

传真:

010-62913587

Email

yongshengli@ninhm.ac.cn

邮编:

100085

地址:

北京市海淀区西三旗安宁庄路1号国家灾研院

更多信息:

简历:

李永生, 应急管理部国家自然灾害防治研究院,研究员

2023.03-至今    应急管理部国家自然灾害防治研究院 研究员

2020.07-2023.03 应急管理部国家自然灾害防治研究院 副研究员

2017.12-2020.07 中国地震局地壳应力研究所 副研究员

2019.03-2020.03 英国纽卡斯尔大学,留学基金委-中国地震局地震英才项目 访问学者

2014.07-2017.12 中国地震局地壳应力研究所 助理研究员

2012.06-2012.12 英国格拉斯哥大学,InSAR技术在地表形变监测中的应用 学生访问学者

2010.09-2014.07 中国地震局工程力学研究所,防灾减灾工程及防护工程 博士学位

2007.09-2010.07 中国地质大学(武汉) 信息工程学院 地图制图学与地理信息工程 硕士学位

2003.09-2007.07 中国地质大学(武汉) 信息工程学院 地理信息系统本科 学士学位

任职:1) 中国地震学会会员

2)中国地震学会对地观测委员会委员

研究方向:

主要从事高精度InSAR关键算法研究,海量InSAR数据计算系统构建及自然灾害链应急和自动化监测等。致力于建立以雷达遥感技术为依托的自然灾害常规和应急天空地一体化监测应用系统,推进雷达遥感在自然灾害(地震,滑坡,洪涝,城市灾害等)监测应用定量化和业务化。

学科类别:

影像大地测量(SAR遥感,GIS等);地震、滑坡等地质灾害天空地监测与遥感应用

1.         冰湖溃决灾害风险监测预警与应急响应技术研发 (西藏自治区基础研究项目,专题负责, 2023.01-2025.12

2.         基于国产卫星的气象灾害及地质水文监测 (民用航天预研项目,专题负责,2023.01-2025.12

3.         L波段差分干涉SAR卫星星地一体化地震行业应用系统方案及在轨测试(国家级科技项目-民用航天项目) 专题负责,2021.12-2023.05)

4.         地质灾害救援现场次生灾害监测装备研发与预警技术研究 (国家重点研发项目:救援现场次生灾害监测预警关键装备课题三,2021YFC3001903,专题负责,2021.12-2024.11)

5.         基于高分数据非干涉形变提取关键技术(高分遥感地震监测与应急应用示范系统(二期),31-Y30B09-9001-20/22,专题负责,2021.01-2022.12

6.         XXX卫星应急管理行业应用需求及电离层影响分析(外协,负责,2022.10-2023.12)

7.         海量InSAR高性能计算与广域地表变形监测 (外协,负责,2023.2-2024.02)

8.         多角度InSAR算法模型集成及测试负责(外协,负责,2022.12-2024.12)

9.         鲜水河-安宁河断裂带交接区现今地壳形变分布特征研究(中央级公益性科研院所基本科研业务专项,ZDJ2018-16)项目负责 2018/10-2021/10

10.     双天线X波段干涉SAR地震行业应用预研 (国家级科技项目-民用航天项目(D010102,项目负责, 李永生, 2017/01-2019/03

11.     宽幅InSAR资料约束下的崩错-东巧共轭走滑断裂系现今运动机制研究 (国家自然科学基金(青年)(41704051, 项目负责, 2018.01-2020.12

12.     云南小江断裂北段InSAR形变场及断层滑动反演研究 (中央级公益性科研院所基本科研业务专项(ZDJ2015-15,项目负责,2015/01-2016/12

13.     L-InSAR卫星与双天线X-InSAR卫星工程研制工作跟进(中国地震局项目(17A45ZX310, 项目负责,2017/01-2017/12

14.     基于改进的Multi-interferogram技术研究亚东谷露活动构造带现今分段变形特征(国家自然科学基金(青年),参与, 2013/01-2015/12

15.     拉萨块体中部现今形变场及强震孕育过程动力学特征研究(所长基金(重点) ZDJ2013-22 ,参与,2013/01–2015/12

16.     干涉SAR地震信息提取关键技术(民用航天技术预先研究项目,参与,2015/01-2015/12

17.     结合D-InSAR和建筑物结构模型的震害建筑物定量评估(所长基金(重点ZDJ2017-29), 参与, 2017/01- 2020/12

18.     西藏人口稠密区现今地壳运动加密观测及地震危险性分析(中国大陆综合地球物理场观测仪器研发专项)Y201711, 参与, 2017/08- 2018/08

19.     川滇地区典型地质灾害天空地立体监测关键技术研究与示范(所长基金(重点) ZDJ2019-17,参与,2018/12–2022/12

代表论著:

1.        Bingquan Li, Wenliang Jiang, Yongsheng Li, Yi Luo, Qisong Jiao, Qingyun Zhang, Monitoring and analysis of Woda landslide (China) Using InSAR and Sentinel-1 data, Advances in Space Research, 2023 http://doi.org/10.1016/j.asr.2023.04.055.

2.        Duan, H., Li, Y.*, Jiang, H. et al. Retrospective monitoring of slope failure event of tailings dam using InSAR time-series observations. Nat Hazards (2023). http://doi.org/10.1007/s11069-023-05946-7

3.        Ma, D.; Zhao, R.; Li, Y.; Li,Z. Land Subsidence Assessment of an Archipelago Based on the InSAR Time Series Analysis Method. Water 2023, 15, 465.http://doi.org/10.3390/w15030465

4.        Zhang, Q., Li, Y., Zhang, J. et al. Slip deformation along the Gyaring Co fault from InSAR and GPS. Acta Geophys. (2022). http://doi.org/10.1007/s11600-022-00920-6

5.         Duan, H.; Li, Y.*; Li, B.; Li, H. Fast InSAR Time-Series Analysis Method in a Full-Resolution SAR Coordinate System: A Case Study of the Yellow River Delta. Sustainability 2022, 14, 10597. http://doi.org/10.3390/su141710597

6.         Yongsheng Li, Yujiang Li*, Kuan Liang, Hao Li, Wenliang JiangCoseismic Displacement and Slip Distribution of the 21 May 2021 Mw 6.1 Earthquake in Yangbi, China Derived From InSAR Observations, Frontiers in Environmental Science202210.3389/fenvs.2022.857739

7.         Li, Y.; Jiang, W.; Li, Y*.; Shen, W.; He, Z.; Li, B.; Li, Q.; Jiao, Q.; Tian, Y. Coseismic Rupture Model and Tectonic Implications of the January 7 2022, Menyuan Mw 6.6 Earthquake Constraints from InSAR Observations and Field Investigation. Remote Sens. 2022, 14, 2111. http://doi.org/10.3390/rs14092111

8.         梁宽, 何仲太*, 姜文亮, 李永生, 刘泽民. 2022. 202218日青海门源MS6.9地的同震地表破裂特征. 地震地质, 44(1): 256-278.

9.         Zhongtai He*, Yongsheng Li, Yujiang Li, Xiaolong Sun, Dongying Liu, Rui Ding, Pengtao Yang; The Surface Process and Seismogenic Structure of the 2021 Ms 6.1 Biru, Central Tibet Earthquake. Seismological Research Letters 2022; doi: http://doi.org/10.1785/0220210177

10.    Li Y, Li Y*, Hu X, Liu H. Fault Geometry and Mechanism of the Mw 5.7 Nakchu Earthquake in Tibet Inferred from InSAR Observations and Stress Measurements. Remote Sensing. 2021; 13(24):5142. http://doi.org/10.3390/rs13245142

11.     Li, Y., Jiang, W.*, Zhang, J. A time series processing chain for geological disasters based on a GPU-assisted sentinel-1 InSAR processor. Nat Hazards (2021). http://doi.org/10.1007/s11069-021-05079-9

12.    Yongsheng Li*, Wenliang Jiang, Jingfa Zhang, Binquan Li, Rui Yan, Xie Wang, Sentinel-1 SAR-Based coseismic deformation monitoring service for rapid geodetic imaging of global earthquakes, Natural Hazards Research, 2021,1,11-19, http://doi.org/10.1016/j.nhres.2020.12.001

13.     Ma Deming, Li Yongsheng, Liu Yanxiong,Cai Jianwei,Zhao Rui Vibration Deformation Monitoring of Offshore Wind TurbinesBased on GBIR, Journal of Ocean University of China, 2021, 20(3).

14.     Li, K., Li, Y., Tapponnier, P., Xu, X., Li, D., & He, Z. (2021). Joint InSAR and field constraints on faulting during the Mw 6.4, July 23, 2020, Nima/Rongma earthquake in central Tibet. Journal of Geophysical Research: Solid Earth, 126, e2021JB022212. http://doi.org/10.1029/2021JB022212

15.     Yang, P.; Sun, X.; Liu, D.;He, Z.; Li, Y. Hydrochemical Characteristics of Groundwater at the Epicenter of the 2021 Biru M6.1 Earthquake in Central Tibet. Water 2021, 13, 3111. http://doi.org/10.3390/w13213111

16.     Bingquan Li, Wenliang Jiang, Yongsheng Li, Yi Luo, Qisong Jiao, Xin Wang & Jingfa Zhang (2021) Comparison of different atmospheric phase screen correction models in ground-based radar interferometry for landslide and open-pit mine monitoring, International Journal of Remote Sensing, 42:15, 5935-5952, http://doi.org/10.1080/01431161.2021.1931543

17.     Li Yongsheng, Tian Yunfeng, Yu Chen, Su Zhe, Jiang Wenliang, Li Zhenhong, Zhang Jingfa, Luo Yi, Li Bingquan, Present-day interseismic deformation characteristics of the Beng Co-Dongqiao conjugate fault system in central Tibet: implications from InSAR observations, Geophysical Journal International, 221(1), 2020, 492–503, http://doi.org/10.1093/gji/ggaa014

18.     Li Yongsheng, Jiao Qisong, Hu Xiuhong et al., Detecting the slope movement after the 2018 Baige Landslides based on ground-based and space-borne radar observations, International Journal of Applied Earth Observations and Geoinformation,2020,84,101949, http://doi.org/10.1016/j.jag.2019.101949

19.     张庆云,李永生*,张景发.2017年伊朗Mw7.3地震震源机制反演及三维形变场获取[J].武汉大学学报(信息科学版),2020,45(02):196-204.

20.     Yi Luo; Wenliang Jiang*; Bingquan Li; Qisong Jiao; Yongsheng Li; Qiang Li; Jingfa Zhang; Analyzing the formation mechanism of the Xuyong landslide, Sichuan Province, China, and emergency monitoring based on multiple remote sensing platform techniques. Geomatics, Natural Hazards and Risk. 2020, 11(1), 654-677, http://doi.org/10.1080/19475705.2020.1745903 

21.     Deming Ma*Yongsheng LiJianwei CaiBingquan LiYanxiong LiuXingguo Chen, Real-Time Diagnosis of Island Landslides Based on GB-RAR, J. Mar. Sci. Eng. 2020,8(3), 192, http://doi.org/10.3390/jmse8030192

1.17.  Bingquan Li, Yongsheng Li*, Wenliang Jiang, Zhe Su, Wenhao Shen, Conjugate ruptures and seismotectonic implications of the 2019 Mindanao earthquake sequence inferred from Sentinel-1 InSAR data, International Journal of Applied Earth Observations and Geoinformation, 2020 http://doi.org/ 10.1016/j.jag.2020.102127

23.     Lin Guo, Huili Gong, Jiwei Li, Lin Zhu, Aimin Xue, Lin Liao, Ying Sun,Yongsheng Li, Zhenxin Zhang, Leyin Hu, Mingliang Gao, Chaofan Zhou,Rui Cheng, and Jiahui Zhou (2020).Understanding uneven land subsidence in Beijing, China, using a novel combination of geophysical prospecting and InSAR. Geophysical Research Letters, 47,e2020GL088676. http://doi.org/10.1029/2020GL088676

24.     Song, C.; Yu, C.; Li, Z.; Li, Y.; Xiao, R. Coseismic Slip Distribution of the 2019 Mw 7.5 New Ireland Earthquake from the Integration of Multiple Remote Sensing Techniques.  Remote Sens. 2019, 11(23), 2767

25.     Zhang, Q., Li, Y.*, Zhang, J., and Luo, Y.: InSAR technique applied to the monitoring of the Qinghai–Tibet Railway, Nat. Hazards Earth Syst. Sci., 19, 2229–2240, http://doi.org/10.5194/nhess-19-2229-2019, 2019

26.     Shen Wenhao, Li Yongsheng, Jiao Qisong et al. Joint inversion of strong motion and InSAR/GPS data for fault slip distribution of the Jiuzhaigou 7.0 earthquake and its application in seismology. Chinese J. Geophys. (in Chinese), 2019, 62(1): 115-129, doi: 10.6038/cjg2019L0541.

27.     张庆云,李永生*,罗毅,张景发,杨建钦.2016年意大利阿马特里切Mw 6.2地震震源机制InSAR反演[J].武汉大学学报(信息科学版),2019,44(01):118-124.

28.     李兵权,李永生*,姜文亮,蔡建伟,甘俊.基于地基真实孔径雷达的边坡动态监测研究与应用[J].武汉大学学报(信息科学版),2019,44(07):1093-1098.

29.     Su Zhe, Yang Yinhui, Li Yongsheng et al., 2019. Coseismic displacement of the 5 April 2017 Mashhad earthquake (Mw 6.1) in NE Iran through Sentinel-1A TOPS data: New implications for the strain partitioning in the southern Binalud Mountains. Journal of Asian Earth Sciences, 169, pp.244-256.

30.     Li, Yongsheng, Luo, Y., Zhang, J., & Jiang, W. (2018). The 2015 mw 6.4 Pishan earthquake, china: geodetic modelling inferred from sentinel-1a tops interferometry. Survey Review, 1-9.

31.     Yunfeng Tian*; Jing Liu-Zeng*; Yi Luo; Yongsheng Li; Jingfa Zhang; Deformation Related to an M<5 Earthquake Sequence on Xiangyang Lake-Burog Co Fault in Central Xizang, China, Observed by Sentinel-1 Data, Bulletin of the Seismological Society of America, 2018, 108(6): 3248–3259

32.     Shen, Wenhao, Yongsheng Li, and Jingfa Zhang. "Hybrid stochastic ground motion modeling of the Mw 7.8 Gorkha, Nepal earthquake of 2015 based on InSAR inversion." Journal of Asian Earth Sciences ,141 (2017): 268-278.

33.     Jiang Wenliang, Li Yongsheng, Tian Yunfeng, et al., Research of seismogenic structure of the Menyuan Ms6.4 earthquake on January 21, 2016 in Leng Long Ling area of NE Tibetan plateau. Seismology and Geology. 2017,39(03):536-49.

34.     Li, Yongsheng, Zhang, J., Li, Z., Luo, Y., Jiang, W. and Tian, Y., 2016. Measurement of subsidence in the Yangbajing geothermal fields, Tibet, from TerraSAR-X InSAR time series analysis. International Journal of Digital Earth, 9(7), pp.697-709.

35.     Li, Yongsheng, Jiang, W., Zhang, J., & Luo, Y. (2016). Space geodetic observations and modeling of 2016 mw 5.9 menyuan earthquake: implications on seismogenic tectonic motion. Remote Sensing, 8(6), 519.

36.     李永生,申文豪,温扬茂,张景发,李振洪,姜文亮,罗毅.2015年尼泊尔M_w7.8地震震源机制InSAR反演及强地面运动模拟[J].地球物理学报,2016,59(04):1359-1370.

37.     李永生,冯万鹏,张景发,李振洪,田云锋,姜文亮,罗毅.2014年美国加州纳帕M_W6.1地震断层参数的Sentinel-1A InSAR反演[J].地球物理学报,2015,58(07):2339-2349.

38.     李永生,张景发,姜文亮,罗毅,王晓醉.基于网络法时序InSAR大气误差校正方法研究[J].大地测量与地球动力学,2015,35(01):145-149.

39.     李永生,张景发,李振洪,姜文亮,罗毅,赵勇.时序InSAR离散相干点相位解缠误差检查与校正方法研究[J].武汉大学学报(信息科学版),2014,39(10):1199-1203+1213.

40.     刘志敏,李永生,张景发,罗毅,刘斌.基于SBAS-InSAR的长治矿区地表形变监测[J].国土资源遥感,2014,26(03):37-42

41.     李永生,张景发,李振洪,罗毅.利用短基线集干涉测量时序分析方法监测北京市地面沉降[J].武汉大学学报(信息科学版),2013,38(11):1374-1377.

42.     李永生,张景发,罗毅,姜文亮.利用高分辨率聚束模式TerraSAR-X影像的PSInSAR监测地表变形[J].武汉大学学报(信息科学版),2012,37(12):1452-1455+1514.

43.     Li Yongsheng, Zhang Jingfa, and Luo Y., 2012. Monitoring of surface deformation in Dangxiong using PSInSAR technique. Journal of Applied Geodesy, 6(3-4), 215-220.

论著:

(1)张景发,李永生,罗毅,张庆云,干涉雷达测量技术及地震应用,清华大学出版社,2020

科学专利与软著:

1.专利发明

1)发明专利名称:一种面向多种地质灾害场景的InSAR形变监测方法和设备,专利号:ZL202111162737.X,发明人:李永生,张景发,姜文亮,田云锋. 发布时间:2022.05.31.

2)发明专利名称:二次滑坡GBSAR自适应监测的方法、系统及相关设备,发明人:李永生,张景发,姜文亮. 发布时间:审查中.

3)发明专利名称:采用InSAR生成全国范围的地表形变一张图的方法和设备,发明人:李永生,姜文亮,张景发,田云锋. 发布时间:审查中.

2. 软著

(1) 计算机软件著作权登记证书,“InSAR时序分析软件”[简称:FRAM-SBASV2.0];证书号:软著登字第2017SR005715号;  

(2)计算机软件著作权登记证书,“ICD-INSAR雷达干涉处理软件”[简称:ICD-INSARV1.0];证书号:软著登字第2011SR080026号;

(3) 计算机软件著作权登记证书,地震同震InSAR自动化处理软件V1.0”, 证书号:软著登字第9520518号;登记号:2022SR0566319.

(4) 计算机软件著作权登记证书,“InSAR时序分析快速处理软件V1.0”, 证书号:软著登字第9516799号;登记号:2022SR0562600.

(5) 计算机软件著作权登记证书,海量InSAR数据批处理软件V1.0”, 证书号:软著登字第9520519号;登记号:2022SR0566320.