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39. Xu, C., K. Ding, J. Cai, & E.W. Grafarend (2009). Methods of determining weight scaling factors for geodetic-geophysical joint inversion. Journal of Geodynamics, 47, 39-46, doi:10.1016/j.jog.2008.06.005.
38. 丁开华, 许才军 (2009). 川滇地区地壳应变场的GPS与地震矩张量联合反演研究. 武汉大学学报.信息科学版, 34(3): 265-268.
37. Ding Kaihua, Xu Caiju, Liu Jingnan (2010). Present-day 3D Crustal Movement in the Qinghai-Tibetan Plateau from GPS data. CPGPS 2010 Navigation and Location Services: Emerging Industry and International Exchanges, 277-282.
36. 敖敏思, 胡友健, 赵斌, 叶险峰, 丁开华 (2011). PCA和KLE在高采样GPS定位中的应用. 大地测量与地球动力学, 31(6): 145-150.
35. 李志才, 张鹏, 丁开华, 蒋志浩 (2012). 基于CGCS2000速度场和地震矩张量联合反演中国大陆构造应变场. 中国地球物理-2012, 626.
34. 敖敏思, 胡友健, 赵斌, 叶险峰, 丁开华 (2012). 小波包分解提取高采样率GPS地震波信号. 地球科学-中国地质大学学报, 37(5): 1101-1108.
33. 丁开华, 许才军, 邹蓉, 胡友健 (2013). 利用GPS分析川滇地区活动地块运动与应变模型. 武汉大学学报.信息科学版, 38(7): 822-827.
32. 丁开华, 许才军, 温扬茂 (2013). 汶川地震震后形变的GPS反演. 武汉大学学报.信息科学版, 38(2): 131-135.
31. Yue, H., T. Lay, J. T. Freymueller, K. Ding, L. Rivera, N. A. Ruppert, & K. D. Koper (2013). Supershear rupture of the 5 January 2013 Craig, Alaska (Mw 7.5) earthquake. J. Geophys. Res., 118, 5903-5919, doi:10.1002/2013JB010594.
30. Jiang, G., C. Xu, Y. Wen, X. Xu, K. Ding, & J. Wang (2014). Contemporary tectonic stressing rates of major strike-slip faults in the Tibetan Plateau from GPS observations using least-squares collocation, Tectonophysics, 615–616, 85–95, doi:10.1016/j.tecto.2013.12.022.
29. 邹蓉, 丁开华, 杨少敏, 王琪, 李志才 (2014). 利用GRACE改正地球参考框架的季节性变化. 大地测量与地球动力学, 34(6): 50-54,59.
28. Zou R., J. T. Freymueller, K. Ding, S. Yang, & Q. Wang (2014). Evaluating Seasonal Loading Models and their Impact on Global and Regional Reference Frame Alignment. J. Geophys. Res., 119, 1137-1358, doi:10.1002/2013JB010186.
27. Ding, K., Z. Li, R. Zou, & Q. Wang (2014). Model analysis of crust motion in the Chinese mainland by CMONOC, Geodesy and Geodynamics, 5(4): 1-8, doi:10.3724/SP.J.1246.2014.04001.
Ding, K., J. Ding, Z. Li, & L. Wang (2014). Analysis on noise model of GNSS base station from CMONOC in Sichuan-Yunnan region, Science of Surveying and Mapping (in Chinese), 39(12): 56-60.
26. 丁开华, 丁剑, 李志才, 王兰立 (2014). 川滇地区陆态网络基准站运动噪声模型分析. 测绘科学, 39(12):56-60.
25. 李志才, 张鹏, 丁开华, 陈现军 (2015). 基于GPS速度场研究中国大陆块体运动. 测绘科学, 40(12): 97-100.
24. Qiao, X., Q. Wang, S. Yang, J. Li, R. Zou, & K. Ding (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, doi:10.1016/j.geog.2015.01.005.
23. 何平, 许才军, 温扬茂, 丁开华, 王庆良 (2015). 利用PALSAR数据研究长白山火山活动性. 武汉大学学报.信息科学版, 40(2): 214-221.
22. Ding, K., J. T. Freymueller, Q. Wang, & R. Zou (2015). Coseismic and early postseismic deformation of the 5 January 2013 Craig Mw 7.5 earthquake from GPS static and kinematic solutions. Bulletin of the Seismological Society of America, 105(2B): 1153-1164, https://doi.org/10.1785/0120140172.
21. 谭凯, 王琪, 丁开华, 李恒, 邹蓉, 聂兆生, 王迪晋, 杨少敏, 乔学军 (2015). 近场位移数据约束的2013年芦山地震破裂模型及其构造意义. 地球物理学报, 58(9): 3169-3182, doi:10.6038/cjg20150913.
20. 李杰, 乔学军, 杨少敏, 聂兆生, 王迪晋, 邹蓉, 丁开华, 王琪 (2015). 西南天山地表三维位移场及断层位错模型. 地球物理学报, 58(10): 3517-3529, doi:10.6038/cjg20151008. (SCI)
19. 李志才, 张鹏, 丁开华, 蒋志浩, 陈现军 (2016). 应用GPS速度场和地震数据反演中国大陆构造应变场. 测绘科学, 41(1): 60-64.
18. 何平, 许才军, 温扬茂, 丁开华, 王琪 (2016). 时序InSAR的误差模型建立及模拟研究. 武汉大学学报.信息科学版, 41(6): 752-758.
17. He, P., Q. Wang, K. Ding, M. Wang, X. Qiao, J. Li, Y. Wen, C. Xu, S. Yang, & R. Zou (2016). Source model of the 2015 Mw 6.4 Pishan earthquake constrained by InSAR and GPS: insight into blind rupture in the western Kunlun Shan. Geophys. Res. Lett., 43, 1511-1519, doi:10.1002/2015GL067140.
16. 王琪, 杨少敏, 丁开华 (2017). 苏门答腊和日本特大地震触发的亚洲高地动力变形. 2017中国地球科学联合学术年会, 817.
15. He, P., E. A. Hetland, Q. Wang, K. Ding, Y. Wen, & R. Zou (2017). Coseismic slip in the Mw 7.8 Ecuador earthquake imaged from Sentinel-1A Radar Interferometry. Seismol. Res. Lett., 2017, 88(2A), 277-286, https://doi.org/10.1785/0220160151.
14. 何平, Eric Hetland, Nathan Niemi, 王琪, 温扬茂, 丁开华 (2018). 北帕米尔阿莱山脉2016年Mw 6.5 Nura地震的震源机制研究: Sentinel-1雷达干涉测量约束的反冲断层破裂. 2018中国地球科学联合学术年会, 529.
13. Li, S., Q. Wang, S. Yang, X. Qiao, Z. Nie, R. Zou, K. Ding, P. He, & G. Chen (2018). Geodetic Imaging Mega-thrust Coupling Beneath the Himalaya. Tectonophysics, 747-748, 225-238, https://doi.org/10.1016/j.tecto.2018.08.014.
12. He, P., E. Hetland, N. Niemi, Q. Wang, Y. Wen, & K. Ding (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(1), 62-71, https://doi.org/10.1016/j.tecto.2018.10.025.
11. He, P., K. Ding*, & C. Xu (2018). The 2016 Mw 6.7 Aketao earthquake in Muji range, northern Pamir: Rupture on a strike-slip fault constrained by Sentinel-1 radar interferometry and GPS. Int. J. Appl. Earth Obs., 73, 99-106, https://doi.org/10.1016/j.jag.2018.06.001.
10. Ding, K., P. He, Y. Wen, Y. Chen, D. Wang, S. Li, Q. Wang (2018). The 2017 Mw 7.3 Ezgeleh, Iran earthquake determined from InSAR measurements and teleseismic waveforms. Geophys. J. Int., 215(3): 1728-1738, https://doi.org/10.1093/gji/ggy371.
9. 杨德芳, 丁开华, 许伟 (2019). GAMIT/GLOBK在高精度长基线像控点解算中的应用. 西安科技大学学报, 39(5): 849-858.
8. 陈云锅, 何平, 丁开华, 李水平, 王琪 (2019). 联合地震波和大地测量数据反演2015年皮山Mw 6.4地震的同震破裂分布. 地震地质, 41(1): 137-149.
Li, S., G. Chen, P. He, K. Ding, Y. Chen, & Q. Wang (2019). Inversion for coseismic slip distribution and afterslip of the 2015 Nepal Mw 7.9 earthquake using angular dislocations. Geomatics and Information Science of Wuhan University (in Chinese), 44(12): 1787-1796.
7. 李水平, 陈刚, 何平, 丁开华, 陈云锅, 王琪 (2019). 2015年尼泊尔地震同震滑动及震后余滑的三角位错模型反演. 武汉大学学报.信息科学版, 44(12): 1787-1796.
6. 方进, 许才军, 温扬茂, 许光煜, 丁开华, 何平 (2019). 基于方差分量估计的2015年尼泊尔MW7.8地震同震滑动分布. 地球物理学报, 62(3): 923-939, doi:10.6038/cjg2019M0476.
5. Liu, G., W. Xiong, Q. Wang, X. Qiao, K. Ding, X. Li, & S. Yang (2019). Source characteristics of the 2017 Ms 7.0 Jiuzhaigou, China, earthquake and implications for recent seismicity in eastern Tibet. J. Geophys. Res., 124, 4895-4915, https://doi.org/10.1029/2018JB016340.
4. Ding, K., J. T. Freymueller, P. He, Q. Wang, & C. Xu (2019). Glacial isostatic adjustment, intraplate strain, and relative sea level changes in the eastern United States. J. Geophys. Res., 124, 6056-6071, https://doi.org/10.1029/2018JB017060.
3. He, P., Y. Wen, Y. Chen, C. Xu, & K. Ding (2020). Coseismic rupture geometry and slip rupture process during the 2018 Mw 7.1 Anchorage, south‐central Alaska earthquake: Intraplate normal faulting by slab tear constrained by geodetic and teleseismic data. Earth and Space Science, 7, e2019EA000924, https://doi.org/10.1029/2019EA000924.
2. Li, S., G. Chen, T. Tao, P. He, K. Ding, R. Zou, J. Li, & Q. Wang (2020). The 2019 Mw 6.4 and Mw 7.1 Ridgecrest earthquake sequence in Eastern California: rupture on a conjugate fault structure revealed by GPS and InSAR measurements. Geophys. J. Int., 221(3): 1651-1666, https://doi.org/10.1093/gji/ggaa099.
1. Chen, Y., K. Ding*, Q. Wang, P. He, S. Li, & X. Qiao (2020). A refined slip distribution of the 2013 Mw 6.7 Lushan, China earthquake constrained by GPS and leveling data. Geophys. J. Int., ggaa202, https://doi.org/10.1093/gji/ggaa202.