徐岳仁

90087392173.jpg

姓名:徐岳仁

政治面貌:九三社员

出生日期:1981年3月

现任职称(职务):研究员

电话: 010-88015694

E-mail:xuyr@ief.ac.cn

教育背景:

1999.09-2003.06  中南大学  地质工程专业  学士

2003.09-2006.07  北京大学  构造地质学专业  硕士

2008.09-2013.07  中国地震局地质研究所  构造地质学专业 博士

工作经历:

2006.07-2009.08  中国地震局地震预测研究所 研究实习员

2009.09-2014.11  中国地震局地震预测研究所 助理研究员

2014.12-2020.12  中国地震局地震预测研究所 副研究员

2017.01-2018.01  Department of Earth Sciences, Durham University, UK 访问学者

2020.12-至   今  中国地震局地震预测研究所 研究员

研究方向及领域:

主要从事地震地质学研究,重点关注古地震、强震触发次生灾害(滑坡、砂土液化),遥感在地震地质研究中的应用等。

目前承担的科研项目(课题):

1.中国地震局地震预测研究所基本科研业务专项重点项目《1976年唐山大地震震例解剖及环渤海强震构造背景研究(CEAIEF20240302)》 项目负责(2024.10-2027.12)

曾负责完成的科研项目(课题):

1.国家自然科学基金面上项目(42072248)《黄土高原历史疑难强震震源参数修订的密集地震滑坡解译方法》 项目负责(2021.01-2024.12)

2.国家自然科学基金青年基金项目(41502204)《山西地堑系洪洞8级地震地表破裂带的北延截止位置及其发震构造运动特征研究》 项目负责(2016-2018)

3.国家重点研发计划项目(2021YFC3000600)《川滇地区活动断裂三维公共模型与大震危险性研究》下设专题《滇西南地块主要断裂精细结构与活动特征研究(2021YFC3000601-3)》 专题负责(2021.12-2024.11)

4.国家重点研发计划项目(2019YFE0108900)政府间/港澳台《中缅边境地区构造活动、地壳形变与地震危险性研究》下设任务负责(2020.10-2024.12)

5.国家自然科学基金重大项目(42041006)《黄河流域地质地表过程与重大灾害效应》 课题1参与(2021.01-2024.12)

6.高分遥感地震监测与应急应用示范系统(二期)(31-Y30F09-9001-20/22)下设课题《高分活动构造与风险排查示范》 课题共同负责(2021.01-2022.12)

7.外交部澜沧江-湄公河合作机制下的多边国际合作项目《湄公河上游中、缅、老、泰边境地区地震危险性分析处理平台的合作建设》(2022.04-2025.04)项目参与

8.国家国际科技合作专项项目(2015DFR21100)下设课题《中俄边界区主要断裂第四纪活动特征与构造动力学模型研究》 课题共同负责 (2015-2018)

9.国家国际合作重大项目(2012DFR20440)下设课题《空间信息处理技术和应用方法研究》课题共同负责(2012-2015)

10.国家高分重大专项(一期)下设专题《地震构造三维定量分析与提取技术》,专题负责 (2013-2015)

11.中国地震局《基于高分辨率遥感解译技术的地震活动断层探察项目》课题《六盘山地区活动断层分段古地震调查》(15230003) 课题负责(2020.01-2020.12)

12.中国地震局地震预测研究所基本科研业务经费《菱形块体东边界区域及邻区的地震构造模型研究(CEAIEF20220102)》 项目负责(2022.5-2023.12)

13.中国地震局地震预测研究所基本科研业务经费重点项目课题《安宁河-则木河断裂交汇区地震构造精细研究(CEAIEF2022050502)》 课题共同负责(2022.5-2023.12)

14.中国地震局地震预测研究所基本科研业务费专项《青藏高原东北缘4个历史疑难地震的地震滑坡研究及其意义》(2019IEF0201) 项目负责(2019.01-2020.12)

15.中国地震局地震预测研究所基本科研业务经费重点项目下设课题《滇东地区小江断裂南、北两端构造交汇区的地震构造模型研究研究》(2015IES010201) 课题负责人(2015-2019)

16.山西省忻州市区活动断层与地震危险性评价(一期)课题《区域遥感影像处理与活动断层解译》 课题负责 (2019-2020)

主要代表性论著:

(一)出版书籍/图件

1.徐岳仁, 陆玲玉, 李浩峰,等译. 地震地质学,地质出版社. 2024.

2.徐岳仁, 李文巧, 杜朋(译). 古地震学(第2版),地质出版社. 2020.

3.徐岳仁, 刘  双. 东三省及邻区地震构造图(1:150万),地震出版社. 2020.

4.刘  双, 徐岳仁.东北地震区地震构造图(1:100万)说明书, 地震出版社. 2020.

5.刘培文, 徐岳仁(译). 活动构造地貌, 地质出版社. 2019.

6.何宏林, 徐岳仁, 魏占玉,毕丽思,孙浩越,高伟,石峰. 霍山山前断裂带分布图(1:50000)说明书, 地震出版社. 2017.

7.曹忠权,申旭辉,徐岳仁,等. 拉萨市活断层探测与地震危险性评价, 地震出版社. 2018.

8.张军龙,陈长云,李建军,徐岳仁,宋卓沁. 青藏高原东缘活动块体隆升过程与形成机制, 地质出版社. 2016.

9.何宏林,魏占玉,石峰,孙浩越,陈长云,毕丽思,徐岳仁,高伟,卫蕾华. 大凉山活动断层(1:50000)说明书, 地震出版社. 2020.

(二)期刊文章(标*为通讯,标#为共同第一)

ResearchGate:https://www.researchgate.net/profile/Yueren_Xu 

Google Scholar: https://scholar.google.com/citations?user=1qh-2rsAAAAJ&hl=en 

ORCID: https://orcid.org/0000-0001-7342-2210 

2025年

1.Peng Liang, Yueren Xu*, Zhou X, Li Y, Tian Q, Zhang H, Ren Z, Yu J, Li C, Gong Z, Wang S, Dou A, Ma Z, Li J.Coseismic surface ruptures of MW7.8 and MW7.5 earthquakes occurred on February 6, 2023, and seismic hazard assessment of the East Anatolian Fault Zone, Southeastern Türkiye. 2025, Science China Earth Sciences, https://doi.org/10.1007/s11430-024-1457-7.

梁朋, 徐岳仁*, 周晓成, 李营, 田勤俭, 张会平, 任治坤, 俞晶星, 李传友, 龚正, 王世广, 窦爱霞, 马自发, 李俊杰. 2023年2月6日土耳其MW7.8 和MW7.5双强震地表破裂与东安纳托利亚断裂带强震危险性. 中国科学: 地球科学, 2025, https://doi:10.1360/SSTe-2024-0053.

2024年

2.Lingyu Lu, Yueren Xu*, Jiacheng Tang, Guiming Hu. Using high-spatial-resolution images to extract the distribution of coseismic landslides and soil liquefaction triggered by the 2024 Hualien Mw 7.4 earthquake in eastern Taiwan. 2024. Earthquake Research Advances, https://doi.org/10.1016/j.eqrea.2024.100356.

3.李佳怡,徐岳仁*,张军龙,母若愚. 基于多源卫星数据的地表破裂带迹线变化识别-以2001年昆仑山口西Ms8.1地震为例. 地震学报, 2024,46(6):982-1001. https://doi.org/10.11939/jass.20230069.

4.徐岳仁,窦爱霞*,李智敏*,梁朋,梁泽毓,陆玲玉. 2023年12月18日甘肃积石山MS6.2地震触发次生灾害快速评估. 地震, 2024, 44(1):209-215. https://doi.org/10.12196/j.issn.1000-3274.2024.01.019.

5.张军龙,徐岳仁,李文巧,陈峰. 中强地震发震构造标志浅析-以2023年积石山MS6.2地震为例. 地震, 2024, 44(1):226-234. https://doi.org/10.12196/j.issn.1000-3274.2024.01.021.

6.Jiajun Sun, Honglin He, Takashi Oguchi, Zhanyu Wei, Shuai Zhao, Yueren Xu, Yongqi Meng, Xiaodi Tan. Geomorphologic mapping and analysis of fault activities along the northern margin of the Yanfan Basin, China. Geomorphology, 2024, https://doi.org/10.1016/j.geomorph.2024.109568.

7.Froemchen Malte, Ken McCaffrey, Mark Allen, Jeroen van Hunen, Thomas Phillips, Yueren Xu. Geomorphic expressions of active rifting reflect the role of structural inheritance: a new model for the evolution of the Shanxi Rift, northern China. Solid Earth, 2024, 15(10):1203-1231. https://doi.org/10.5194/se-15-1203-2024.

8.Leihua Wei, Weimin He, Yueren Xu, Yanlin Du, Aopeng Dai, Xiaopeng Song, Shuya Xu, Jingjing Qin. Late Quaternary activity of Wulashan Northern fault, North China. Frontiers in Earth Science, 2024, https://doi.org/10.3389/feart.2024.1437012.

9.Zheng Gong, Haibing Li, Huiping Zhang, Kerem Kuterdem, Shiguang Wang, Jialiang Si, Yong Zheng, Peng Liang, Chenglong Li, Chuanyou Li, Zhikun Ren, Jingxing Yu, Xiaocheng Zhou, Yueren Xu, Zifa Ma, Junjie Li, Fangtou Tang. The 2023 Mw7.7 Pazarcik earthquake caused a reversal in vertical motion along the SW branch of the East Anatolian fault. Journal of Structural Geology, 2024, https://doi.org/10.1016/j.jsg.2024.105172.

10.李浩峰, 徐岳仁*, 郭雅丽, 刘晗, 赵昕雨, 陆玲玉, 唐嘉诚. 滇西南1976年龙陵MS7.3、MS7.4双强震触发滑坡遥感解译及其构造意义. 地震地质, 2024, 46(1): 117-140. https://doi.org/10.3969/j.issn.0253-4967.2024.01.008.

2023年

11.Yueren Xu*, Zihong Li*, Jie Fei*. Preface to the special issue on Prehistorical/Historical Giant Hazards and their social effects in China. Natural Hazards Research, 2023, https://doi.gor/10.1016/j.nhres.2023.12.001.

12.Yali Guo, Haofeng Li, Peng Liang*, Renwei Xiong, Chaozhong Hu, Yueren Xu*. Preliminary report of coseismic surface rupture (part) of Turkey's MW7.8 earthquake by remote sensing interpretation, Earthquake Research Advances, 2023, https://doi.org/10.1016/j.eqrea.2023.100219.

13.Yali Guo, Yueren Xu*, Haofeng Li, Lingyu Lu, Wentao Xu, Peng Liang. Using Keyhole Images to Map Soil Liquefaction Induced by the 1966 Xingtai Ms 6.8 and 7.2 Earthquakes, North China. Remote Sensing, 2023,  https://doi.org/10.3390/rs15245777.

14.肖金宇,徐岳仁*,刘雷,张伟恒,李文巧,杜朋. 2014年8月3日云南鲁甸MS6.5地震触发滑坡遥感解译研究. 地震,2023, 43(4): 101-118. https://doi.org/10.12196/j.issn.1000-3274.2023.04.007.

15.郭春杉,李文巧,徐岳仁,闫小兵. 运城盆地鸣条岗地裂缝展布特征与成因分析. 地震,2023, 43(4): 50-66. https://doi.org/10.12196/j.issn.1000-3274.2023.04.004.

16.Xiaoyi Shao, Siyuan Ma, Chong Xu, Yueren Xu. Insight into the Characteristics and Triggers of Loess Landslides during the 2013 Heavy Rainfall Event in the Tianshui Area, China. Remote Sensing, 2023, https://doi.org/10.3390/rs15174304.

17.Peng Du, Yueren Xu*, Yali Guo, Haofeng Li. Assessing loess landslide volume using high-precision UAV-derived DEM: A case study of the 15 March 2019 landslide in Zaoling Township, Xiangning County in North China. Natural Hazards Research, 2023, https://doi.gor/10.1016/j.nhres.2023.07.006.

18.Siyuan Ma, Xiaoyi Shao, Chong Xu, Yueren Xu. Insight from a Physical-Based Model for the Triggering Mechanism of Loess Landslides Induced by the 2013 Tianshui Heavy Rainfall Event. Water, 2023, https://doi.org/10.3390/w15030443.

2022年

19.Yueren Xu*, Jing Liu-Zeng, Mark B. Allen, Peng Du, Weiheng Zhang, Wenqiao Li, Qinjian Tian. Understanding historical earthquakes by mapping coseismic landslides in the Loess Plateau, Northwest China. Earth Surface Processes and Landforms, 2022, 47(9):2266-2282. https://doi.org/10.1002/esp.5375.

20.Yueren Xu*,Yanbo Zhang, Runchao Liu, Wenqiao Li, Weiheng Zhang, Peng Du, Qinjian Tian. Preliminary analyses of landslides and sand liquefaction triggered by 22 May, 2021, Maduo Mw 7.3 earthquake on Northern Tibetan Plateau, China. Landslides, 2022, 19, 155-164. https://doi.org/10.1007/s10346-021-01811-5.

21.Weiheng Zhang, Yueren Xu*, Xinyi Guo, Wenqiao Li, Peng Du, Qinjian Tian. Distribution and Characteristics of Damming Landslides triggered by 1920 M~8 Haiyuan earthquake, NW China. Remote Sensing, 2022, https://doi.org/10.3390/rs14102427.

22.Peng Liang, Yueren Xu*, Wenqiao Li, Yanbo Zhang, Qinjian Tian. Automatic identification of liquefaction induced by 2021 Maduo Mw7.3 Earthquake based on machine learning methods Title. Remote Sensing, 2022, 14, 5595. https://doi.org/10.3390/rs14215595.

23.Feng Jing*, Yueren Xu, Ramesh P. Singh. Changes in Surface Water Bodies Associated with Madoi (China) Mw 7.3 Earthquake of 21 May 2021 Using Sentinel-1 data. IEEE Transactions on Geoscience and Remote Sensing, 2022, https://doi.org/10.1109/TGRS.2022.3170890.

24.Fanyu Zhang*, Gonghui Wang, Mark B. Allen, Yueren Xu*. Editorial: Multidisciplinary Loess Geohazard Investigations. Frontiers in Earth Science, 2022, https://doi.org/10.3389/feart.2022.884610.

25.Zhimin Li, Runchao Liu*, John He, Wenjun Zhu, Wanhe Wang, Yueren Xu, Wenqiao Li, Lin Ding. From ka to Ma: A multi-timescale record of accelerating Cenozoic tectonic uplift between the Qilian Shan and Qaidam Basin, northern Tibetan Plateau. The Geological Society of America Bulletin, 2022, https://doi.org/10.1130/B36496.1.

26.Shunying Hong*, Mian Liu, Tai Liu, Yanfang Dong, Lize Chen, Guojie Meng, Yueren Xu. Fault source model and stress changes of the 2021 Maduo Mw 7.4 earthquake, China, constrained by InSAR and GPS measurements. Bulletin of the Seismological Society of America, 2022, https://doi.org/10.1785/0120210250.

27.Yanbo Zhang, Yueren Xu*, Wenqiao Li, Runchao, Liu, Ruoyu Mu, Jiayi Li, Da Zhang, Haofeng Li, Qinjian Tian. Coseismic Surface Rupture Characteristics and Earthquake Damage Analysis of the Eastern End of the 2021 Ms 7.4 Maduo (Qinghai) Earthquake. Earthquake Research Advances, 2022, https://doi.org/10.1016/j.eqrea.2022.100133.

28.Peng Liang, Yueren Xu*, Wenqiao Li, Yanbo Zhang, Qinjian Tian. A case-based reasoning method of recognizing liquefaction pits induced by 2021 Mw 7.3 Maduo earthquake. Earthquake Research Advances, 2022, https://doi.org/10.1016/j.eqrea.2022.100182.

29.闫东晗,徐智涛,徐岳仁,孙立影,冯靖乔,韩迪. 伊通-舒兰断裂带四平段~14C定年及构造意义. 大地测量与地球动力学, 2022,42(08):835-839. https://doi.org/10.14075/j.jgg.2022.08.012.

30.Zhigang Shao, Yanqiang Wu, Lingyun Ji, Faqi Diao, Fuqiang Shi, Yujiang Li, Feng Long, Hui Zhang, Wuxing Wang, Wenxin Wei, Peng Wang*, Xiaoxia Liu, Qi Liu, Zhengyang Pan, Xiaofei Yin, Yue Liu, Wei Feng, Zhenyu Zou, Jia Cheng, Renqi Lu, Yueren Xu, Xi Li. Assessment of strong earthquake risk in the Chinese mainland from 2021 to 2030. Earthquake Research Advances, 2022, https://doi.org/10.1016/j.eqrea.2022.100177.

31.Shao Zhigang, Wu Yanqiang, Ji Lingyun, Diao Faqi, Shi Fuqiang, Li Yujiang, Long Feng, Zhang Hui, Zhu Liangyu, Chen Changyun, Wang Wuxing, Wei Wenxin, Wang Peng, Liu Xiaoxia, Liu Qi, Pan Zhengyang, Yin Xiaofei, Liu Yue, Feng Wei, Zou Zhenyu, Cao Jianling, Xu Jing, Han Libo, Cheng Jia, Lu Renqi, Xu Yueren, Li Xi, Sun Xinzhe. Comprehensive determination for the late stage of the interseismic period of major faults in the boundary zone of active tectonic blocks in Mainland China. Chinese Journal of Geophysics (in Chinese), 2022, https://doi.org/10.6038/cjg2022P0489.

32.Yanru An*, Dun Wang, Qiang Ma, Yueren Xu, Yu Li, Yingying Zhang, Zhumei Liu, Chunmei Huang, Jinrong Su, Jilong Li, Mingxiao Li, Wenkai Chen, Zhifan Wan, Dengjie Kang, Baoshan Wang. Preliminary report of the 5 September 2022 MS 6.8 Luding earthquake, Sichuan, China. Earthquake Research Advances, 2022, https://doi.org/10.1016/j.eqrea.2022.100184.

2021年

33.Yueren Xu*, Jing Liu-Zeng, Mark B. Allen, Weiheng Zhang, Peng Du. Landslides of the 1920 Haiyuan earthquake, northern China. Landslides, 2021, 18(3): 935-953, https://doi.org/10.1007/s10346-020-01512-5. 

34.Peng Du, Yueren Xu*, Qinjian Tian, Wenqiao Li. Using Google Earth images to extract dense landslides induced by historical earthquake at the Southwest of Ordos, China. Frontiers in Earth Science, 2021, https://doi.org/10.3389/feart.2020.633342. 

35.刘静, 袁兆德,徐岳仁,邵延秀,王鹏,徐晶,林舟,韩龙飞. 古地震学:活动断裂强震复发规律的研究. 地学前缘,2021, 28(02):211-231. https://doi.org/10.13745/j.esf.sf.2020.9.8.

36.李智敏, 李文巧*, 李涛*, 徐岳仁, 苏鹏, 郭鹏, 孙浩越, 哈广浩, 陈桂华, 袁兆德, 李忠武, 李鑫, 杨理臣, 马震, 姚生海, 熊仁伟, 张彦博, 盖海龙, 殷翔, 徐玮阳, 董金元. 2021年5月22日青海玛多Ms7.4地震的发震构造和地表破裂初步调查. 地震地质, 2021, 43(3): 722-737. https://doi.org/10.3969/j.issn.0253-4967.2021.03.016.

37.耿爽,王林,田勤俭,徐岳仁,李文巧,袁兆德.2020年新疆于田Ms 6.4地震发震构造研究.地震,2021,41(02):1-13. https://doi.org/10.12196/j.issn.1000-3274.2021.02.001.

38.张波,田勤俭,王爱国,李文巧,徐岳仁,高泽民. 西秦岭临潭-宕昌断裂第四纪最新活动特征. 地震地质, 2021,43(01):72-91. http://doi.org/10.3969/j.issn.0253-4967.2021.01.005

39.路畅, 周晓成, 李莹, 刘磊, 颜玉聪, 徐岳仁. 玛多MS7.4 地表破裂带与东昆仑断裂温泉的水文地球化学特征. 地震地质, 2021, 43(5): 1101-1126. https://doi.org/10.3969/j.issn.0253-4967.2021.05.005.

2020年

40.Yueren Xu*, Mark B. Allen, Weiheng Zhang, Wenqiao Li, Honglin He. Landslide characteristics in the Loess Plateau, northern China. Geomorphology, 2020, 359(107150), https://doi.org/10.1016/j.geomorph.2020.107150. 

41.Yueren Xu, Peng Du, Wenqiao Li*, Weiheng Zhang, Qinjian Tian, Renwei Xiong, Lin Wang. 2020. A case study on AD 1718 Tongwei M7.5 earthquake triggered landslides—Application of landslide database triggered by historical strong earthquakes on the Loess Plateau. Chinese Journal of Geophysics (in Chinese), 63(3): 1235-1248, https://doi.org/10.6038/cjg2020N0146.

42.Haibo Li#, Yueren Xu #, Jiawen Zhou#, Xiekang Wang#, Hiromitsu Yamagishi, Jie Dou #*. Preliminary analyses of a catastrophic landslide occurred on July 23, 2019, in Guizhou Province, China. Landslides, 2020, 17,719-724. https://doi.org/10.1007/s10346-019-01334-0.

43.Yueren Xu*, Peng Du, Wenqiao Li, Qinjian Tian, Lize Chen. Relationship between the landslides triggered by the Tongwei M 7½ earthquake in AD 1718 and the disappearance of Yongning ancient town. Earthquake Research in China, 2020, 34(4): 465-478. https://doi.org/10.19743/j.cnki.0891-4176.202004005 

44.Lanmin Wang, Chong Xu, Yanbo Cao, Yueren Xu. Preface to the Special issue on Loess Landslides. Earthquake Research in China, 2020, 34(4): 546-559. https://doi.org/10.19743/j.cnki.0891-4176.202004002

45.Weiheng Zhang, Yueren Xu*, Peng Du, Wenqiao Li, Qinjian Tian, Lize Chen. Identifying Spatial Distribution Characteristics of Coseismic Landslides Induced by the 1920 Haiyuan Earthquake via Remote Sensing Images. Earthquake Research in China, 2020, 34(4): 523-545. https://doi.org/10.19743/j.cnki.0891-4176.202004003

46.Yanbo Zhang, Yueren Xu*, Peng Du, Wenqiao Li, Lize Chen, Qinjian Tian. Research on Volume Calculation of Rock Falls and Loess Landslides Triggered by AD 1556 Huaxian M8½ Earthquake, Shaanxi Province, China. Earthquake Research in China, 2020, 34(4): 599-616. https://doi.org/10.19743/j.cnki.0891-4176.202004001 

47.Peng Du, Yueren Xu*, Wenqiao Li, Qinjian Tian, Lize Chen. Volume Calculation of Landslides and Dammed Lake Sediments Triggered by a Strong Historical Earthquake on the Loess Plateau: A Case Study of Qiuzigou, Gansu Province, Northwest China. Earthquake Research in China, 2020, 34(4):580-598. https://doi.org/10.19743/j.cnki.0891-4176.202004004.

48.Peng Du, Yueren Xu*, Qinjian Tian, Weiheng Zhang, Shuang Liu. The Spatial Distribution and Attribute Parameter Statistics of Landslides Triggered by the May 12th, 2008, MW7.9 Wenchuan Earthquake. Earthquake Research in China, 2020, 34(1), 29-49, https://doi.org/10.19743/j.cnki.0891-4176.202001006.

49.康健,徐岳仁,姜云爽,杜天然,马艳丽,李继业.  依兰—伊通断裂北段断层氢气的地球化学特征分析. 地震地磁观测与研究, 2020.41(04):111-120.

50.康健,赵谊,臧姗姗,徐岳仁,王丽梅,刘长生. 依兰-伊通断裂方正-萝北段氢气特征研究. 震灾防御技术, 2020,15(02):443-451.

2019年

51.Jie Dou, Ali P. Yunus, Yueren Xu, Zhongfan Zhu, Chi-Wen Chen, Mehebub Sahana, Khabat Khosravi, Yong Yang, and Binh Thai Pham. Torrential rainfall-triggered shallow landslide characteristics and susceptibility assessment using ensemble data-driven models in the Dongjiang Reservoir Watershed, China. Natural Hazards, 2019, 97(2): 579-609. https://doi.org/10.1007/s11069-019-03659-4.

52.Haoyue Sun, Honglin He*, Yasutaka Ikeda, Zhanyu Wei, Changyun Chen, Yueren Xu, Feng Shi, Lisi Bi, Yoshiki Shirahama, Shinsuke Okada, Tomoo Echigo. Paleoearthquake History Along the Southern Segment of the Daliangshan Fault Zone in the Southeastern Tibetan Plateau. Tectonics, 2019, 38(7): 2208-2231. https://doi.org/10.1029/2018TC005009.

53.郭春杉,李文巧,田勤俭,徐岳仁,杜朋,刘双. 中条山断裂解州段晚更新世滑动速率研究. 地震, 2019, 39(04):13-26.

54.王林, 田勤俭, 李文巧, 赵妍, 徐岳仁. 2017年西藏米林Ms 6.9地震发震构造初探. 地球物理学报. 2019, 62(7): 2549-2566, https://doi.org/10.6038/cjg2019M0012.

2018年

55.Yueren Xu, Honglin He*, Qidong Deng, Mark B. Allen, Haoyue Sun, Lisi Bi. The CE 1303 Hongdong earthquake and the Huoshan Piedmont fault, Shanxi graben: Implications for magnitude limits of normal fault earthquakes. Journal of Geophysical Research: Solid Earth, 2018, 123(4): 3098-3121, https://doi.org/10.1002/2017JB014928.

56.徐岳仁, 何宏林, 李文巧*, 张伟恒, 田勤俭. 1303年洪洞地震宏观震中修订的新证据. 地震地质, 2018, 40(5):945-966. https://doi.org/10.3969/j.issn.0253-4967.2018.05.001.

57.徐岳仁, 张伟恒, 李文巧*, 何宏林, 田勤俭. 1556年华县地震同震黄土滑坡密集区的发现及意义. 地震地质, 2018, 40(4):721-737. https://doi.org/10.3969/j.issn.0253-4967.2018.04.001.

58.张伟恒,李文巧,田勤俭,徐岳仁,王林. 基于牛栏江宽谷面的变形讨论莲峰、昭通断裂带第四纪活动特征. 地震,2018,38(04): 22-36.

59.Lin Wang, Yan Zhao, Qinjian Tian, Wenqiao Li, Yueren Xu. Research of the Differential Uplifting in the Palongzangbu Region Based on the Synthesis of the Watershed Index and Seismic Data. Earthquake Research in China. 2018. 32(01):64-79.

60.卫蕾华,蒋汉朝,何宏林,徐岳仁,高伟,魏占玉. 末次冰期山西洪洞高分辨率粒度和磁化率事件及其气候演化意义. 海洋地质与第四纪地质, 2018,38(4): 193-202. https://doi.org/10.16562/j.cnki.0256-1492.2018.04.017.

2017年及更早前

1.张宇,徐岳仁. 2012年北京7.21特大暴雨对地表水体分布的遥感研究. 国土资源导刊, 2017, (01): 28-36+75.

2.毕丽思,何宏林,徐岳仁,魏占玉,石峰,孙浩越. 山西霍山山前断裂冲沟S-A双对数图、凹曲指数与陡峭指数的构造响应特征. 地震地质, 2017,39(06): 1158-1172, https://doi.org/10.3969/j.issn.0253-4967.2017.06.005.

3.赵妍,王林,田勤俭,李文巧,徐岳仁. 基于地表流域指数和相关资料综合研究帕隆藏布地区的差异构造隆升. 地震, 2017,37(03): 38-50.

4.鲁恒新,徐岳仁,陈立泽,张学民,申旭辉,崔静. 国产GF-2和ZY-3卫星数据在活动断裂定量研究中的应用——以哈思山南麓断裂带为例. 地震, 2017,37(01): 121-133.

5.王辉,曹建玲,洪顺英,徐岳仁,荆凤. 2008年和2014年2次新疆于田M7地震之间的黏弹性应力转移. 地震地质,2016,38(03): 646-659, https://doi.org/10.3969/j.issn.0253-4967.2016.03.011.

6.荆凤,徐岳仁,张晓咏,申旭辉,陈立泽.“高分四号”卫星在地震行业中的应用潜力分析. 航天返回与遥感, 2016, 37(4): 110-115.

7.Jie Dou, Hiromitsu Yamagishi, Hamid Reza Pourghasemi, Ali P. Yunus, Xuan Song, Yueren Xu, Zhongfan Zhu. An integrated artificial neural network model for the landslide susceptibility assessment of Osado Island, Japan. Natural Hazards, 2015, 78(3):1749-1776. https://doi.org/10.1007/s11069-015-1799-2.

8.Zhanyu Wei, Lisi Bi, Yueren Xu, Honglin He *. Evaluating knickpoint recession along an active fault for paleoseismological analysis: The Huoshan Piedmont, Eastern China. Geomorphology, 235 (2015): 63-76. https://doi.org/10.1016/j.geomorph.2015.01.013.

9.Korzhenkov AM, Rogozhin EA, Xuhui Shen, Qinjian Tian, Yueren Xu. Strong paleoearthquakes along the Talas-Fergana fault, Kyrgyzstan. Geodesy and Geodynamics, 2015, 5(01): 11-19, https://doi.org/10.3724/SP.J.1246.2014.01011.

10.徐岳仁,陈立泽*,申旭辉,洪顺英,王辉,荆凤,董彦芳. 基于GF-1卫星影像解译2014年新疆于田Ms7.3级地震同震地表破裂带. 地震, 2015, 35(2): 61-71.

11.何宏林,魏占玉,毕丽思,徐岳仁. 利用基岩断层面形貌定量特征识别古地震——以霍山山前断裂为例. 地震地质, 2015, 37(02): 400-412. https://doi.org/10.3969/j.issn.0253-4967.2015.02.005/.

12.陈立泽,徐岳仁. 宣化盆地高光谱遥感第四纪地层分类提取初步研究. 湘潭大学自然科学学报, 2015,37(01):153-159.

13.卫蕾华,何宏林,蒋汉朝,徐岳仁,魏占玉,高伟,邹俊杰. 黄土地区粒度与磁化率分层对古地震研究的意义——以山西洞峪沟黄土剖面为例. 地震地质, 2015, 37(04): 1096-1114. https://doi.org/10.3969/j.issn.0253-4967.2015.04.013.

14.徐岳仁. 山西霍山山前断裂带晚第四纪活动特征研究. 国际地震动态, 2014,(6):37-39.

15.徐岳仁,何宏林,陈立泽,申旭辉. 基于CBERS数据的附件南平地质灾害动态遥感. 国土资源遥感, 2014, (03): 153-159.

16.毕丽思,何宏林,徐岳仁,魏占玉,石峰,孙浩越. 霍山山前断裂带冲沟纵剖面数学拟合函数的构造响应特征. 中山大学学报(自然科学版), 2014,(06): 37-44.

17.张军龙,任金卫,徐岳仁,陈长云. 网格DEM剖面方法获取岷江上游层状地貌参数. 武汉大学学报(信息科学版), 2013, (11):1378-1382.

18.徐岳仁,何宏林*,邓起东,魏占玉,毕丽思,孙浩越. 山西霍山山脉河流地貌定量参数及其构造意义. 第四纪研究, 2013, 33(4): 746-759. https://doi.org/10.3969/j.issn.1001-7410.2013.04.12 

19.魏占玉,何宏林,石峰,徐岳仁,毕丽思,孙浩越. 大凉山断裂带南段滑动速率估计. 地震地质, 2012,34(02): 282-293. https://doi.org/10.3969/j.issn.0253-4967.2012.02.007

20.徐岳仁,张军龙,陈长云. DGPS和SPOT-5异轨立体像对在岷江源构造地貌研究中的应用. 北京大学学报(自然科学版),2012, 48(4): 574-582.

21.徐岳仁,何宏林,申旭辉*,陈立泽. 利用CBERS数据开展资兴市东江水库库区地质灾害动态监测试验研究. 北京大学学报(自然科学版),2011, 47(4): 689-697.

22.徐岳仁,申旭辉,何宏林,陈立泽,孙浩越. CBERS-02B数据在霍山山前活动断裂带1:5万填图中的应用. 中国科学 F辑:信息科学, 2011,41(S1): 202-212.

23.毕丽思,何宏林,徐岳仁,魏占玉,石峰. 基于高分辨率DEM的裂点序列提取和古地震序列的识别——以霍山山前断裂为实验区. 地震地质, 2011,33(04): 963-977. https://doi.org/10.3969/j.issn.0253-4967.2011.04.019.

24.刘静,申旭辉,徐岳仁,申俊峰,荆凤,洪顺英. 拉萨那林拉卡断裂带晚第四纪古地震研究. 地震地质, 2009,31(02): 265-275. https://doi.org/10.3969/j.issn.0253-4967.2009.02.007.

25.张军龙,申旭辉,徐岳仁,高战武,吕晓健,杨攀新. 汶川8级大地震的地表破裂特征及分段. 地震, 2009, 29(02): 48-56.

26.徐岳仁,申旭辉,洪顺英,荆凤,刘静,陈庞龙.用多源遥感数据解译深圳市主要活断层. 地震, 2009,29(S1):154-163.

27.荆凤,申旭辉,冯春,洪顺英,刘静,徐岳仁. 中巴地球资源卫星数据在地震活断层研究中的应用——以巴里坤断裂带为例. 地震, 2009, 29(02):48-56.

28.顾国华,王武星,徐岳仁,李文军. 区域网GPS观测得到的2008年汶川MS8.0地震前的地壳水平运动.地震学报, 2009,31(06):597-605. https://doi.org/10.3321/j.issn:0253-3782.2009.06.001.

29.刘静,申旭辉,孟恺,陈正位,戴娅琼,徐岳仁,荆凤,洪顺英.谷露盆地西缘断裂晚第四纪活动初步研究.地震,2009,29(03):45-53.

30.顾国华,王武星,孟国杰,徐岳仁. GPS测得的汶川大地震前后的地壳运动.武汉大学学报(信息科学版), 2009,34(11):1336-1339. https://doi.org/10.13203/j.whugis2009.11.003.

31.李铁锋,徐岳仁,潘懋,丛威青,温铭生,连建发. 基于多期SPOT-5影像的降雨型浅层滑坡遥感解译研究. 北京大学学报(自然科学版), 2007,43(2):204-210.

32.王晓朋,潘懋,徐岳仁. 基于流域单元的泥石流区域危险性评价. 山地学报, 2006,24(2):177-180.

33.王晓朋,潘懋,丛威青,徐岳仁. 辽宁鞍山市岫岩县泥石流区域危险性评价. 水文地质工程地质, 2006,33(02):93-95.

科研成果奖励:

2017年中国地震局防灾减灾科技成果奖三等奖(4/5).

2020年西藏自治区地震局优秀成果奖一等奖(3/12).

个人荣誉及奖励:

应急管理部2021年青海玛多7.4级地震抗震救灾嘉奖

研究生联合培养:

已毕业硕士研究生7名,其中,作为副导师联合培养5名。在读硕士研究生6名,其中,作为副导师联合培养1名。

其他:

1.中国地震局地震预测重点实验室副主任(2022.11-),

2.中国地震局地震预测研究所科技委委员(2021-),青年科技委副主任委员(2022.6-);

3.中国地震学会地震地质专业委员会委员(2016-);

4.全国地震动参数区划图编制委员会委员(2022.8-);

5.《Earthquake Research Advances》编委(2021-)


最后更新时间:2025-01-02