[1] 马积新 译. 能登半岛海面地震受害隧道的修复: 大谷狼烟饭田线 木之浦隧道[J]. 世界隧道, 1997, 6(6): 57. MA Ji-xin. Reconstruction of tunnel damaged by sea surface earthquake in Noteng Peninsula: Kinoura Tunnel on Otani Noya Iida Line[J]. World Tunnel, 1997, 6(6): 57 (in Chinese). [2] 张国民, 李丽. 强震成组孕育、 成组发生过程中相互间影响的研究[J]. 地震, 1997, 17(3): 221-231. ZHANG Guo-min, LI Li. On group features of the strong earthquake preparation and occurrence and their correlation [J]. Earthquake, 1997, 17(3): 221-231 (in Chinese). [3] 邵志刚, 王武星, 刘琦, 等. 活动地块理论框架下的地震物理预报展望[J]. 科学通报, 2022, 67(13): 1362-1377. SHAO Zhi-gang, WANG Wu-xing, LIU Qi, et al. Prospects of earthquake physical forecasting under the framework of active-tectonic block theory[J]. Chinese Science Bulletin, 2022, 67(13): 1362-1377 (in Chinese). [4] 高原, 李心怡, 李抒予, 等. 2023年12月18日积石山6.2级地震的深浅变形构造分析[J]. 地震, 2024, 44(1). doi:10.12196/j.issn.1000-3274.2024.01.012 GAO Yuan, LI Xin-yi, LI Shu-yu, et al. Deep and shallow deformation tectonics of Jishishan MS6.2 earthquake on 18 December 2023 in China[J]. Earthquake, 2024, 44(1). doi:10.12196/j.issn.1000-3274.2024.01.012 (in Chinese). [5] Wu Y, Jiang Z, Liang H, et al. Coseismic deformations of the 2015 MW7.8 Gorkha earthquake and interseismic strain accumulation in the Himalayan tectonic belt and Tibetan Plateau[J]. Tectonophysics, 2016, 670: 144-154. [6] Yamagishi H, Yamazaki F. Landslides by the 2018 Hokkaido Iburi-Tobu earthquake on September 6[J]. Landslides, 2018, 15(12): 2521-2524. [7] 邵长金, 唐炼, 李相方. 2003年日本北海道8.0级地震次声波特征研究[J]. 地震, 2005, 25(1): 74-80. SHAO Chang-jin, TANG Lian, LI Xiang-fang. Characteristics of infrasonic waves caused by the MS8.0 earthquake in 2003 in Hokkaido, Japan[J]. Earthquake, 2005, 25(1): 74-80 (in Chinese). [8] Wang F, Fan X, Yunus A P, et al. Coseismic landslides triggered by the 2018 Hokkaido, Japan (MW6.6), earthquake: Spatial distribution, controlling factors, and possible failure mechanism[J]. Landslides, 2019, 16(8): 1551-1566. [9] Mukunoki T, Kasama K, Murakami S, et al. Reconnaissance report on geotechnical damage caused by an earthquake with JMA seismic intensity 7 twice in 28 h, Kumamoto, Japan[J]. Soils and Foundations, 2016, 56(6): 947-964. [10] 范宣梅, 王欣, 戴岚欣, 等. 2022年MS6.8级泸定地震诱发地质灾害特征与空间分布规律研究[J]. 工程地质学报, 2022, 30(5): 1504-1516. FAN Xuan-mei, WANG Xin, DAI Lan-xin, et al. Characteristics and spatial distribution pattern of MS6.8 Luding earthquake occurred on September 5, 2022[J]. Journal of Engineering Geology, 2022, 30(5): 1504-1516 (in Chinese). [11] 宋静园, 刘洋, 董秀军, 等. “9·5”泸定地震人口密集区域同震滑坡空间分布规律[J/OL]. 地质科技通报, 1-12. https://doi.org/10.19509/j.cnki.dzkq.tb20230619. SONG Jing-yuan, LIU Yang, DONG Xiu-jun, et al. Spatial distribution of co-seismic landslide in densely populated area of the “9·5” Luding earthquake[J/OL]. Bulletin of Geological Science and Technology, 1-12. https://doi.org/10.19509/j.cnki.dzkq.tb20230619 (in Chinese). [12] 陈博, 宋闯, 陈毅, 等. 2023年甘肃积石山MS6.2地震同震滑坡和建筑物损毁情况应急识别与影响因素研究[J/OL]. 武汉大学学报(信息科学版), 1-16. https://doi.org/10.13203/J.whugis20230497. CHEN Bo, SONG Chuang, CHEN Yi, et al. Emergency identification and influencing factor analysis of coseismic landslides and building damages induced by the 2023 MS6.2 Jishishan (Gansu, China) earthquake[J/OL]. Journal of Wuhan University (Information Science Edition), 1-16. https://doi.org/10.13203/J.whugis20230497 (in Chinese). [13] Chen G, Xia M, Thuy D T, et al. A possible mechanism of earthquake-induced landslides focusing on pulse-like ground motions[J]. Landslides, 2021, 18(5): 1641-1657. [14] Xie J, Zimmaro P, Li X, et al. Rupture directivity effects on strong ground motion during the 15 April 2016 MW7.0 Kumamoto earthquake in Japan[J]. Bulletin of the Seismological Society of America, 2017, 107(3): 1265-1276. [15] Li Z, Chen G, Han Z, et al. The influence of pulse-like ground motion caused by the directivity effect on landslide triggering[J]. Bulletin of Engineering Geology and the Environment, 2024, 83(1): 48. |