(四)帕米尔及邻区地震事件相关研究文章列表

Ainscoe, E.A., Elliott, J.R., Copley, A., Craig, T.J., Li, T., Parsons, B.E., & Walker, R.T. (2017). Blind thrusting, surface folding, and the development of geological structure in the Mw 6.3 2015 Pishan (China) earthquake. Journal of Geophysical Research: Solid Earth, 122.

Bloch, W., Metzger, S., Schurr, B., Yuan, X., Ratschbacher, L., Reuter, S., et al. (2021). The 2015–2017 Pamir earthquake sequence: Fore-, main-, and aftershocks, seismotectonics and fault interaction. Earth and Space Science Open Archive.

Bloch, W., Metzger, S., Schurr, B. D., Yuan, X., Ratschbacher, L., Reuter, S., et al. (2021). The 2015–2017 Pamir Earthquake Sequence: Fore-, Main-, and Aftershocks, Seismotectonics, Fault Interaction, and Fluid Processes. https://www.essoar.org/doi/abs/10.1002/essoar.10508392.2

Bloch, W., Schurr, B., Yuan, X., Xu, Q., Zhao, J., Murodkulov, S., Oimuhammadzoda, & I. (2022): Earthquake and Moment Tensor Catalogs of the 2015-2017 Pamir Earthquake Sequence. GFZ Data Services.

Chen, Q.; Fu, B.; Shi, P.; Li, Z. (2022). Surface Deformation Associated with the 22 August 1902 Mw 7.7 Atushi Earthquake in the Southwestern Tian Shan, Revealed from Multiple Remote Sensing Data. Remote Sens. 14, 1663.

Elliott, A., Elliott, J., Hollingsworth, J., Kulikova, G., Parsons, B., Walker, R. (2020). Satellite imaging of the 2015 M7.2 earthquake in the Central Pamir, Tajikistan, elucidates a sequence of shallow strike-slip ruptures of the Sarez-Karakul fault. Geophysical Journal International. 221, 1696–1718.

Gan, J., Hu, J., Li, Z., Yang, C., Liu, J., Sun, Q., & Zheng, W. (2018). Mapping three-dimensional co-seismic surface deformations associated with the 2015 MW7.2 Murghab earthquake based on InSAR and characteristics of crustal strain. Science China Earth Sciences, 61(10), 1451-1466.

He, P., Hetland, E. A., Niemi, N. A., Wang, Q., Wen, Y., & Ding, K. (2018). The 2016 Mw 6.5 Nura earthquake in the Trans Alai range, northern Pamir: Possible rupture on a back-thrust fault constrained by Sentinel-1A radar interferometry. Tectonophysics, 749, 62-71.

Hu, Z., Li, T., Thompson Jobe, J., & Yang, X. (2021b). Lower Portion Rupture of a Thrust Fault during the 2017 Mw 6.3 Jinghe Earthquake: Implications to Seismic Hazards in the Tian Shan Region. Seismological Research Letters, 92(4), 2134-2144.

Jackson, J., Molnar, P., Patton, H., & Fitch, T. (1979). Seismotectonic aspects of the Markansu Valley, Tadjikstan, earthquake of August 11, 1974. Journal of Geophysical Research, 84(B11), 6157.

Kulikova, G., Schurr, B., Krüger, F., Brzoska, E., & Heimann, S. (2016). Source parameters of the Sarez-Pamir earthquake of 1911 February 18. Geophysical Journal International, 205(2), 1086-1098.

Li, T., Chen, J., Fang, L., Chen, Z., Thompson, J. A., & Jia, C. (2016b). The 2015 Mw 6.4 Pishan Earthquake: Seismic Hazards of an Active Blind Wedge Thrust System at the Western Kunlun Range Front, Northwest Tibetan Plateau. Seismological Research Letters, 87(3), 601-608.

Li, T., Chen, Z., Chen, J., Thompson Jobe, J. A., Burbank, D. W., Li, Z., He, X., Zheng, W., Zhang, P., & Zhang, B. (2019b). Along‐Strike and Downdip Segmentation of the Pamir Frontal Thrust and Its Association With the 1985 Mw 6.9 Wuqia Earthquake. Journal of Geophysical Research: Solid Earth, 124(9), 9890-9919.

Li, T., Sun, J., Bao, Y., Zhan, Y., Shen, Z.-K., Xu, X., & Lasserre, C. (2021b). The 2019 Mw 5.8 Changning, China earthquake: A cascade rupture of fold-accommodation faults induced by fluid injection. Tectonophysics, 801, 228721.

Michel, S., Jolivet, R., Rollins, C., Jara, J., & Dal Zilio, L. (2021). Seismogenic potential of the Main Himalayan Thrust constrained by coupling segmentation and earthquake scaling. Geophysical Research Letters, 48(13), e2021GL093106.

Pegler, G., & Das, S. (1998). An enhanced image of the Pamir–Hindu Kush seismic zone from relocated earthquake hypocentres. Geophysical Journal International, 134(2), 573-595.

Qiao, X., Wang, Q., Yang, S., Li, J., Zou, R., & Ding, K. (2015). The 2008 Nura Mw6. 7 earthquake: A shallow rupture on the Main Pamir Thrust revealed by GPS and InSAR. Geodesy and Geodynamics, 6(2), 91-100.

Schurr, B., Ratschbacher, L., Sippl, C., Gloaguen, R., Yuan, X., & Mechie, J. (2014). Seismotectonics of the Pamir. Tectonics, 33(8), 1501-1518.

Sippl, C., Ratschbacher, L., Schurr, B., Krumbiegel, C., Rui, H., Pingren, L., & Abdybachaev, U. (2014). The 2008 Nura earthquake sequence at the Pamir-Tian Shan collision zone, southern Kyrgyzstan. Tectonics, 33(12), 2382-2399.

Sippl, C., Schurr, B., Yuan, X., Mechie, J., Schneider, F. M., Gadoev, M., . . . Radjabov, N. (2013). Geometry of the Pamir‐Hindu Kush intermediate‐depth earthquake zone from local seismic data. Journal of Geophysical Research: Solid Earth, 118(4), 1438-1457.

Sloan, R. A., Jackson, J. A., McKenzie, D., & Priestley, K. (2011). Earthquake depth distributions in central Asia, and their relations with lithosphere thickness, shortening and extension. Geophysical Journal International, 185(1), 1-29.

Sycheva, N. A., & Mansurov, A. N. (2019). Seismotectonic deformations of earth crust in Pamir and neighbor areas. IOP Conference Series: Earth and Environmental Science, 324(1).

Washburn, Z., Arrowsmith, J. R., Dupont-Nivet, G., Feng, W. X., Qiao, Z. Y., & Zhengle, C. (2003). Paleoseismology of the Xorxol segment of the central Altyn Tagh fault, Xinjiang, China. Annals of Geophysics, 46(5). https://www.annalsofgeophysics.eu/index.php/annals/article/download/3443/3488

Washburn, Z., Arrowsmith, J. R., Forman, S. L., Cowgill, E., Xiaofeng, W., Yueqiao, Z., & Zhengle, C. (2001). Late Holocene earthquake history of the central Altyn Tagh fault, China. Geology, 29(11), 1051-1054. https://doi.org/10.1130/0091-7613(2001)029<1051:LHEHOT>2.0.CO;2

Wu, C., Liu, J., Li, J., Hu, W., Wu, G., Chang, X., & Yao, Y. (2019). The 2015 Ms 6.5 Pishan earthquake, Northwest Tibetan Plateau: A folding event in the western Kunlun piedmont. Geosphere, 15(3), 935-945.

Xu, Y. (2006). Analysis of Seismic Activity in the Crust from Earthquake Relocation in the Central Tien Shan. Bulletin of the Seismological Society of America, 96(2), 737-744.

Yang, H., Chen, J., Porat, N., Li, T., Li, W., & Xiao, W. (2017). Coarse versus fine-grain quartz optical dating of the sediments related to the 1985 Ms7.1 Wuqia earthquake, northeastern margin of the Pamir salient, China. Geochronometria, 44(1), 299-306.

Yao, Y., Chen, J., Li, T., Fu, B., Wang, H., Li, Y., & Jia, H. (2019). Soil liquefaction in seasonally frozen ground during the 2016 Mw6.6 Akto earthquake. Soil Dynamics and Earthquake Engineering, 117, 138-148.

Yao, Y., Tang, L., Li, W., He, J., & Jia, H. (2021). Seismic Damage and Analysis of the Xiker Earth Dam During the 2020 Jiashi Earthquake, Northwestern China. Frontiers in Earth Science, 9.

Yao, Y., Wen, S., Yang, L., Wu, C., Sun, X., Wang, L., & Zhang, Z. (2022). A Shallow and Left‐Lateral Rupture Event of the 2021 Mw 5.3 Baicheng Earthquake: Implications for the Diffuse Deformation of Southern Tianshan. Earth and Space Science, 9(3).

Yuan, Z., Chen, J., Owen, L. A., Hedrick, K. A., Caffee, M. W., Li, W., . . . Robinson, A. C. (2013). Nature and timing of large landslides within an active orogen, eastern Pamir, China. Geomorphology, 182, 49-65.

Zhan, Z., & Kanamori, H. (2016). Recurring large deep earthquakes in Hindu Kush driven by a sinking slab. Geophysical Research Letters, 43(14), 7433-7441.

陈杰, 陈宇坤, 丁国瑜, 田勤俭, 王赞军, 单新建, . . . 王志才. (2003). 2001年昆仑山口西8.1级地震地表破裂带. 第四纪研究(06), 629-639+717-718. http://www.dsjyj.com.cn/article/id/dsjyj_9223

陈杰, 陈宇坤, 丁国瑜, 王赞军, 田勤俭, 尹功明, . . . 王志才. (2004). 2001年昆仑山口西M_S8.1地震地表同震位移分布特征. 地震地质(03), 378-392. https://www.dzdz.ac.cn/CN/Y2004/V26/I3/378

陈杰, 李涛, 孙建宝, 房立华, 姚远, 李跃华, . . . 付博. (2016). 2016年11月25日新疆阿克陶M_W6.6地震发震构造与地表破裂. 地震地质, 38(04), 1160-1174. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2016.04.028

高国英, 聂晓红, & 夏爱国. (2011). 1902年阿图什81/4级地震前后地震活动特征. 内陆地震, 25(02), 120-128. http://www.cnki.com.cn/Article/CJFDTotal-LLDZ201102004.htm

高国英, & 申文庄. (1998). 1998年5月29日皮山6.2级地震概况. 国际地震动态(09), 35. http://www.cqvip.com/qk/92674x/199809/3197213.html

李海兵, 潘家伟, 孙知明, 刘栋梁, 张佳佳, 李成龙, . . . 龚正. (2015). 2014年于田Ms7.3地震地表破裂特征及其发震构造. 地质学报, 89(01), 180-194. http://www.cagsbulletin.com/dqxbcn/ch/reader/view_abstract.aspx?flag=1&file_no=20140315&journal_id=dqxbcn

李文巧, 陈杰, 袁兆德, 黄明达, 李涛, 余松, & 杨晓东. (2011). 帕米尔高原1895年塔什库尔干地震地表多段同震破裂与发震构造. 地震地质, 33(02), 260-276. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2011.02.002

闵伟,宋方敏,韩竹军 & 徐锡伟.(2006).柯坪塔格断裂西段古地震初步研究. 地震地质(02),234-244. https://www.dzdz.ac.cn/CN/

乔秀夫,李海兵,王思恩,郭宪璞,司家亮 & 宗文明.(2008).新疆境内塔拉斯-费尔干纳断裂早侏罗世走滑的古地震证据. 地质学报(06),721-730. 新疆境内塔拉斯-费尔干纳断裂早侏罗世走滑的古地震证据 Paleoseismic Evidence of the Talas-Ferghana Strike-Slip Fault during Early Jurassic, Xinjiang期刊界 All Journals 搜尽天下杂志 传播学术成果 专业期刊搜索 期刊信息化 学术搜索

冉勇康,杨晓平,程建武,徐锡伟 & 陈立春.(2006).西南天山柯坪推覆构造柯坪塔格山前逆断裂东段晚第四纪的古地震. 地震地质(02),245-257. https://www.dzdz.ac.cn/CN/

冉勇康,陈立春,沈军,李军 & 宫会玲.(2007).乌鲁木齐西山断裂组与地表破裂型逆断层古地震识别标志. 地震地质(02),218-235. https://www.dzdz.ac.cn/CN/

苏金蓉 & 郭志.(2013).西南天山—帕米尔2008年10月5日M_S6.7级地震震源机制研究. 地球物理学报(02),504-512. 西南天山-帕米尔2008年10月5日MS6.7级地震震源机制研究 (geophy.cn)

覃金堂,陈杰 & 李涛.(2020).阿尔金断裂带中段现代沉积物样品钾长石红外激发后红外释光的残留信号——对年轻古地震事件测年的指示意义. 地震地质(04),981-992. 阿尔金断裂带中段现代沉积物样品钾长石红外激发后红外释光的残留信号——对年轻古地震事件测年的指示意义 (dzdz.ac.cn)

王坚,寇大兵,戴晓敏,张勇,李军,艾买提.(1999).1998年5月29日皮山县6.2级地震烈度分布特征及损失评估. 内陆地震(01),50-57. doi:10.16256/j.issn.1001-8956.1999.01.011. 1998年5月29日皮山县6.2级地震烈度分布特征及损失评估-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)

杨纪林,胡军,南凌.(2001).新疆策勒西南古地震形变带研究. 内陆地震(02),154-159. doi:10.16256/j.issn.1001-8956.2001.02.009. 新疆策勒西南古地震形变带研究-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)

杨晓平,李安,黄伟亮 & 张玲.(2011).天山北麓活动背斜区河流阶地与古地震事件. 地震地质(04),739-751. https://www.dzdz.ac.cn/CN/Y2011/V33/I4/739

姚远,李涛,刘奇 & 邸宁.(2021).2020年1月19日新疆伽师M_W6.0地震震中区地质灾害特点. 地震地质(02),410-429. https://www.dzdz.ac.cn/CN/Y2021/V43/I2/410

尤惠川,邓起东,冉勇康.(2004).断层崖演化与古地震研究. 地震地质(01),33-45. https://www.dzdz.ac.cn/CN/

张培震,邓起东,徐锡伟,冯先岳,彭斯震,杨晓平,赵瑞斌,李军.(1994).盲断裂、褶皱地震与新疆1906年玛纳斯地震. 地震地质(03). https://www.dzdz.ac.cn/CN/

张培震.(2008).中国地震灾害与防震减灾. 地震地质(03),577-583. https://www.dzdz.ac.cn/CN/

张迎峰,单新建,张国宏,李成龙,温少妍 & 解全才.(2021).2020年M_W6.0柯坪塔格地震的变形特征及其对周边地震危险性的启示. 地震地质(02),377-393. https://www.dzdz.ac.cn/CN/Y2021/V43/I2/377

赵瑞斌,李军,沈军.(2000).喀什坳陷北缘活动断裂与古地震初步研究. 地震学报(03),327-331+336. 喀什坳陷北缘活动断裂与古地震初步研究 (dzxb.org)

赵瑞斌,沈军,李军.(2001).1902年新疆阿图什8(1/4)级地震形变特征与发震模式初探. 地震地质(04),493-500. https://www.dzdz.ac.cn/CN/

朱海之,陈杰.(1990).新疆独山子山前活断层和活褶皱及古地震研究. 内陆地震(02),97-106. doi:10.16256/j.issn.1001-8956.1990.02.001. 新疆独山子山前活断层和活褶皱及古地震研究-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)

Mitrofan, H., Cadicheanu, N., Niculae, L., & Chitea, F. (2022). Hindu Kush intermediate-depth seismicity: A possible explanation for the preferential asymmetry displayed by river catchments within the corresponding epicentral area. Tectonophysics, 832, 229360.

Mon, C. T., Gong, X., Wen, Y., Jiang, M., Chen, Q. F., Zhang, M., Hou, G., Thant, M., Sein, K., & He, Y. (2020). Insight into major active faults in central Myanmar and the related geodynamic sources. Geophysical Research Letters, 47(8), e2019GL086236.

Peng, C., Yang, J., Wang, W., Zheng, Y., Jiang, X., Han, J., Tian, B., & Xu, Z. (2018). The Namche Barwa Temporary Seismic Network (NBTSN) and Its Application in Monitoring the 18 November 2017 M 6.9 Mainling, Tibet, China, Earthquake. Seismological Research Letters, 89(5), 1730-1740.

Prada, D. A., Sanabria, M. P., Torres, A. F., Álvarez, M. A., & Gómez, J. (2018, April). Comparative analysis of seismic persistence of Hindu Kush nests (Afghanistan) and Los Santos (Colombia) using fractal dimension. In Journal of Physics: Conference Series (Vol. 1002, No. 1, p. 012010). IOP Publishing. https://iopscience.iop.org/article/10.1088/1742-6596/1002/1/012010/meta

Rahman, M. M., Bai, L., Khan, N. G., & Li, G. (2018). Probabilistic seismic hazard assessment for Himalayan–tibetan region from historical and instrumental earthquake catalogs. Pure and Applied Geophysics, 175(2), 685-705. https://link.springer.com/article/10.1007/s00024-017-1659-y