毕珉峰, 楚全芝, 邓志辉, 等. 2012. 长江三峡地区仙女山断裂北端延伸问题探讨[J]. 地震地质, 34(2): 294—301. doi: 10.3969/j. issn.0253-4967.
BI Min-feng, CHU Quan-zhi, DENG Zhi-hui, et al. 2012. Tectonic landform and location of the northern end of Xiannüshan Fault at the Three Gorges area[J]. Seismology and Geology, 34(2): 294—301(in Chinese).
蔡晓刚, 姚陈, 陈晓非. 2011. 各向异性ATI介质剪切位错源地震矩张量[J]. 地球物理学报, 54(7): 1772—1782.
CAI Xiao-gang, YAO Chen, CHEN Xiao-fei. 2011. Seismic moment tensor in anisotropic ATI media: Shear faulting[J]. Chinese J Geophys, 54(7): 1772—1782(in Chinese).
陈学波, 陈步云, 张四维, 等. 1994. 长江三峡工程坝区及外围深度构造特征研究[M].北京: 地震出版社. 1—29.
CHEN Xue-bo, CHEN Bu-yun, ZHANG Si-wei, et al. 1994. Study of Deep Tectonic Characteristics in the Yangtze-Three Gorges Dam and Adjacent Area[M]. Seismological Press, Beijing. 1—29(in Chinese).
高士钧. 1992. 长江三峡地区地壳应力场与地震[M]. 北京: 地震出版社. 15—32.
GAO Shi-jun. 1992. Crustal Stress Field and Earthquake in the Three Gorges Area[M]. Seismological Press, Beijing. 15—32(in Chinese).
李强, 赵旭, 蔡晋安, 等. 2009. 三峡水库坝址及邻区中上地壳P波速度结构[J]. 中国科学(D辑), 39(4): 427—436.
LI Qiang, ZHAO Xu, CAI Jin-an, et al. 2009. P-wave velocity structure of upper and middle crust beneath the Three Gorges reservoir dam and adjacent region[J]. Science in China(Ser D), 39(4): 427—436(in Chinese).
廖武林, 姚运生, 丁志峰, 等. 2007. 三峡地区P波速度层析成像研究[J]. 大地测量与地球动力学, 27(3): 80—84.
LIAO Wu-lin, YAO Yun-sheng, DING Zhi-feng, et al. 2007. Tomographic imagery of P wave velocity structure in Three Gorges region[J]. Journal of Geodesy and Geodynamics, 27(3): 80—84(in Chinese).
谭成轩. 1991. 长江三峡工程库首区仙女山断裂北延问题研究[J]. 水文地质工程地质, 18(5): 13—17.
TAN Cheng-xuan. 1991. Northward extension of Xiannüshan fault in the front region of Yangtze Gorges project[J]. Hydrogeology and Engineering Geology, 18(5): 13—17(in Chinese).
王墩, 姚运生, 薛军蓉, 等. 2007. 三峡水库重点监视区蓄水前后震源机制研究[J]. 大地测量与地球动力学, 27(5): 103—107.
WANG Dun, YAO Yun-sheng, XUE Jun-rong, et al. 2007. Focal mechanism of key monitoring area of Three Gorges reservoir before and after impoundment[J]. Journal of Geodesy and Geodynamics, 27(5): 103—107(in Chinese).
王瑞江, 谭成轩. 1995. 长江三峡地区仙女山断裂带构造活动性及其北延问题讨论[J]. 地球科学: 中国地质大学学报, 20(6): 693—696.
WANG Rui-jiang, TAN Cheng-xuan. 1995. A discussion of structural activity of Xiannüshan fault belt and its extension towards north in the Three Gorges on the Yangtze River[J]. Earth Science: Journal of China University of Geosciences, 20(6): 693—696(in Chinese).
王小龙, 马胜利, 郭志, 等. 2013. 利用地震背景噪声成像技术反演三峡库区及邻近地区地壳剪切波速度结构[J]. 地球物理学报, 56(12): 4113—4124.
WANG Xiao-long, MA Sheng-li, GUO Zhi, et al. 2013. S-wave velocity of the crust in Three Gorges reservoir and the adjacent region inverted from seismic ambient noise tomography[J]. Chinese J Geophys, 56(12): 4113—4124(in Chinese).
杨淑贤, 高士钧, 蔡永建, 等. 2005. 三峡及邻区新构造期以来应力场分区研究[J]. 大地测量与地球动力学, 25(4): 42—45.
YANG Shu-xian, GAO Shi-jun, CAI Yong-jian, et al. 2005. Study on stress field zoning in Three Gorges and its adjacent area since neotectonic age[J]. Journal of Geodesy and Geodynamics, 25(4): 42—45(in Chinese).
杨淑贤, 周明礼, 徐孝文, 等. 1993. 秭归盆地东缘断裂构造觅踪: 再论仙女山断裂带北延过长江问题[J]. 地壳形变与地震, 13(2): 48—54.
YANG Shu-xian, ZHOU Ming-li, XU Xiao-wen, et al. 1993. Seeking for east boundary fault structure at Zigui Basin: A further discussion on northward extension through Yangtze River of the Xiannüshan fault zone[J]. Crustal Deformation and Earthquake, 13(2): 48—54(in Chinese).
袁登维, 梅应堂, 秦兴黎, 等. 1996. 长江三峡工程坝区及外围地壳稳定性研究[M]. 武汉: 中国地质大学出版社. 42—65.
YUAN Deng-wei, MEI Ying-tang, QIN Xing-li, et al. 1996. Study of Crustal Stability in the Yangtze-Three Gorges Dam and Adjacent Area[M]. China University Geosciences Press, Wuhan. 42—65(in Chinese).
张毅, 陈超, 梁青, 等. 2012. 三峡地区中上地壳密度结构[J]. 地球科学: 中国地质大学学报, 37(增): 213—221.
ZHANG Yi, CHEN Chao, LIANG Qing, et al. 2012. Density structure of upper and middle crust in Three Gorges reservoir area[J]. Earth Science: Journal of China University of Geosciences, 37(Suppl): 213—221(in Chinese).
Cesca S, Heimann S, Dahm T. 2011. Rapid directivity detection by azimuthal amplitude spectra inversion[J]. J Seismol, 15(1): 147—164(submitted).
Cesca S, Heimann S, Stammler K, et al. 2010. Automated procedure for point and kinematic source inversion at regional distances[J]. Journal of Geophysical Research, 115(B6): B06304.
Dziewonski A M, Woodhouse J H. 1983. An experiment in the systematic study of global seismicity: Centroid moment tensor solutions for 201 moderate and large earthquakes of 1981[J]. J Geophys Res, 88: 3247—3271.
Kawakatsu H. 1995. Automated near-real time CMT inversion[J]. Geophys Res Lett, 22: 2569—2572.
Sipkin S A. 1982. Estimation of earthquake source parameters by the inversion of waveform data: Synthetic waveforms[J]. Phys Earth Planet Inter, 30: 242—259.
Sipkin S A. 1986. Estimation of earthquake source parameters by the inversion of waveform data: Global seismicity, 1981-1983[J]. Bull Seismol Soc Am, 76: 1515—1541.
Snoke J A, Munsey J W, Teague A C, et al. 1984. A program for focal mechanism determination by combined use of polarity and SV-P amplitude ratio data[J]. Earthquake Notes, 55(3): 1—15.
Thomsen L. 1986. Weak elastic anisotropy[J]. Geophysics, 51(10): 1954—1966.
Wang R. 1999. A simple orthonormalization method for the stable and efficient computation of Green's functions[J]. Bull Seismol Soc Am, 89: 733—741.
Zhang Z J, Bai Z M, Waiter M, et al. 2009. Crustal structure across the Three Gorges area of the Yangtze platform, central China, from seismic refraction/wide-angle reflection data[J]. Tectonophysics, 475(3-4): 423—437. |