陈洪凯, 唐红梅. 2009. 三峡库区公路缓倾角岩层边坡崩塌机理及警报系统[J]. 重庆师范大学学报(自然科学版), 26(3): 26—29.
CHEN Hong-kai, TANG Hong-mei. 2009. Developing mechanism and hazard alarming system for collapse of rock slope with gentle dip along highway in Three Gorges reservoir region[J]. Journal of Chongqing Normal University(Natural Science), 26(3): 26—29(in Chinese).
陈立春, 王虎, 冉勇康, 等. 2010. 玉树MS7.1地震地表破裂与历史大地震[J]. 科学通报, 55(13): 1200—1205.
CHEN Li-chun, WANG Hu, RAN Yong-kang, et al. 2010. The MS7.1 Yushu earthquake surface ruptures and historical earthquakes[J]. Chinese Science Bulletin, 55(13): 1200—1205(in Chinese).
陈晓清, 崔鹏, 游勇, 等. 2013. 4·20芦山地震次生山地灾害与减灾对策[J]. 地学前缘, 20(3): 29—34.
CHEN Xiao-qing, CUI Peng, YOU Yong, et al. 2013. Secondary mountain disasters induced by the 4·20 Lushan earthquake and disaster mitigation[J]. Earth Science Frontiers, 20(3): 29—34(in Chinese).
陈玉华, 马玉虎, 杨晓霞, 等. 2010. 青海玉树7.1级地震异常及其思考[J]. 国际地震动态, 11: 19—26.
CHEN Yu-hua, MA Yu-hu, YANG Xiao-xia, et al. 2010. The seismic anomalies of Yushu MS7.1 earthquake and some relevant thoughts[J]. Recent Developments in World Seismology, 11: 19—26(in Chinese).
邓起东, 张培震, 冉勇康, 等. 2003. 中国活动构造与地震活动[J]. 地学前缘, 10(特刊): 66—73.
DENG Qi-dong, ZHANG Pei-zhen, RAN Yong-kang, et al. 2003. Active tectonics and earthquake activities in China[J]. Earth Science Frontiers, 10(Suppl): 66—73(in Chinese).
黄润秋, 刘卫华, 周江平, 等. 2007. 滚石运动特征试验研究[J]. 岩土工程学报, 29(9): 1296—1302.
HUANG Run-qiu, LIU Wei-hua, ZHOU Jiang-ping, et al. 2007. Rolling tests on movement characteristics of rock blocks[J]. Chinese Journal of Geotechnical Engineering, 29(9): 1296—1302(in Chinese).
蒋瑶, 吴中海, 刘艳辉, 等. 2014a. 青海玉树活动断裂带的多期古地震滑坡及其年龄[J]. 地质通报, 33(4): 503—516.
JIANG Yao, WU Zhong-hai, LIU Yan-hui, et al. 2014a. The characteristics of palaeo-earthquake landslides along Yushu faulted zone and their ages[J]. Geological Bulletin of China, 33(4): 503—516(in Chinese).
蒋瑶, 吴中海, 李家存, 等. 2014b. 2010年玉树7. 1级地震诱发滑坡特征及其地震地质意义[J]. 地质学报, 88(6): 1157—1176.
JIANG Yao, WU Zhong-hai, LI Jia-cun, et al. 2014b. The characteristics of landslides triggered by the Yushu MS7.1 earthquake and its seismogeology implication[J]. Acta Geologica Sinica, 88(6): 1157—1176(in Chinese).
李跃华, 吴中海, 叶培盛, 等. 2013. 玉树断裂带左旋走滑活动标志及其几何学与运动学特征[J]. 地质通报, 32(9): 1410—1422.
LI Yue-hua, WU Zhong-hai, YE Pei-sheng, et al. 2013. The geomorphologic and geological marks of active left-lateral strike-slip fault and the characteristics of geometry and kinematics along the Yushu Fault zone, in south-eastern Tibet[J]. Geological Bulletin of China, 32(9): 1410—1422(in Chinese).
刘韶, 张惠玲, 秦佩玲, 等. 1996. 铀系年代学[A]. 见: 中国科学院南沙综合考察队编. 南沙群岛及其邻近海域铀钍沉积特征和年代研究. 北京: 海洋出版社. 2—32.
LIU Shao, ZHANG Hui-ling, QIN Pei-ling, et al. 1996. Uranium-series chronology[A]. In: Sedimentation Characteristics and Chronology Study of U and Th in and near the South China Sea. China Ocean Press, Beijing. 2—32(in Chinese).
M.伊凡诺维奇, R.S.哈蒙. 1982. 铀放射系的不平衡及其在环境研究中的应用[M]. 陈铁梅, 赵树森, 原思训, 等译. 北京: 海洋出版社. 172—173.
Ivanovich M, Harmon R S. 1982. Uranium Series Disequilibrium: Applications to Environmental Problems[M]. Translated by CHEN Tie-mei et al. China Ocean Press, Beijing. 172—173(in Chinese).
马寅生, 张永双, 胡道功, 等. 2010. 玉树地震地表破裂与宏观震中[J]. 地质力学学报, 16(2): 115—128.
MA Yin-sheng, ZHANG Yong-shuang, HU Dao-gong, et al. 2010. The surface ruptures and the macroscopical epicenter of Yushu MS7.1 earthquake[J]. Journal of Geomechanics, 16(2): 115—128(in Chinese).
马志邦, 郑绵平, 吴中海, 等. 2010. 不纯碳酸盐U-Th等时线定年及同位素分馏对年龄的影响[J]. 地质学报, 84(8): 1146—1153.
MA Zhi-bang, ZHENG Mian-ping, WU Zhong-hai, et al. 2010. U-Th isochron dating of impure carbonates and the possible effect of isotopic fractionation during leaching[J]. Acta Geologica Sinica, 84(8): 1146—1153(in Chinese).
潘家伟, 李海兵, 吴富峣, 等. 2011. 2010年玉树地震(MS7.1)地表破裂特征、破裂机制与破裂过程[J]. 岩石学报, 27(11): 3449—3459.
PAN Jia-wei, LI Hai-bing, WU Fu-yao, et al. 2011. Surface rupture characteristics, rupture mechanics, and rupture process of the Yushu earthquake(MS7.1), 14/04/2010[J]. Acta Petrologica Sinica, 27(11): 3449—3459(in Chinese).
裴向军, 黄润秋. 2013. 4·20芦山地震地质灾害特征分析[J]. 成都理工大学学报(自然科学版), 40(3): 257—263.
PEI Xiang-jun, HUANG Run-qiu. 2013. Analysis of characteristics of geological hazards by "4·20" Lushan earthquake in Sichuan, China[J]. Journal of Chengdu University of Technology(Science & Technology Edition), 40(3): 257—263(in Chinese).
钱晓东, 秦嘉政. 2010. 2010年青海玉树地震及震后青藏高原强震趋势分析[J]. 地震研究, 33(4): 255—264.
QIAN Xiao-dong, QIN Jia-zheng. 2010. 2010 earthquake in Yushu, Qinghai Province and strong earthquake trend analysis of the Qinghai-Tibet Plateau after the earthquake[J]. Journal of Seismological Research, 33(4): 255—264(in Chinese).
田婷婷, 吴中海, 马志邦, 等. 2014. 青海玉树断裂带地震落石的地震地质意义[J]. 地质通报, 33(4): 567—577.
TIAN Ting-ting, WU Zhong-hai, MA Zhi-bang, et al. 2014. A tentative discussion on the seismic and geological significance of the seismic rockfall along the Yushu faulted zone in Qinghai Province[J]. Geological Bulletin of China, 33(4): 567—577(in Chinese).
王东坡, 何思明, 葛胜锦, 等. 2013. 9·07彝良地震诱发次生山地灾害调查及减灾建议[J]. 山地学报, 31(1): 101—107.
WANG Dong-po, HE Si-ming, GE Sheng-jin, et al. 2013. Mountain hazards induced by the earthquake of Sep 07, 2012 in Yiliang and the suggestions of disaster reduction[J]. Journal of Mountain Science, 31(1): 101—107(in Chinese).
王坛华, 陈剑平, 安鹏程. 2008. 边坡滚石灾害的作用机理与防治对策[J]. 世界地质, 27(1): 68—73.
WANG Tan-hua, CHEN Jian-ping, AN Peng-cheng. 2008. Mechanism of action and prevention methods of slope rock fall hazard[J]. Global Geology, 27(1): 68—73(in Chinese).
王阎昭, 王敏, 沈正康, 等. 2011. 2010年玉树地震震前甘孜-玉树断裂形变场分析[J]. 地震地质, 33(4): 525—532. doi: 10.3969/j.issn.0253-4967.2011.03.003.
WANG Yan-zhao, WANG Min, SEHN Zheng-kang, et al. 2011. Inter-seismic deformation field of the Ganzi-Yushu Fault before the 2010 Yushu earthquake[J]. Seismology and Geology, 33(4): 525—532(in Chinese).
吴中海, 周春景, 冯卉, 等. 2014. 青海玉树地区活动断裂与地震[J]. 地质通报, 33(4): 419—469.
WU Zhong-hai, ZHOU Chun-jing, FENG Hui, et al. 2014. Active faults and earthquake around Yushu in eastern Tibetan plateau[J]. Geological Bulletin of China, 33(4): 419—469(in Chinese).
向欣. 2010. 边坡落石运动特性及碰撞冲击作用研究[D]: [学位论文]. 武汉: 中国地质大学. 5.
XIANG Xin. 2010. Research on motion characteristics and impact force of rockfall[D]. Dissertation. China University of Geosciences, Wuhan. 5(in Chinese).
许冲, 徐锡伟, 戴福初, 等. 2011. 2010 年3月03日玉树地震滑坡空间分布与控制变量分析[J]. 工程地质学报, 19(4): 505—510.
XU Chong, XU Xi-wei, DAI Fu-chu, et al. 2011. Analysis of spatial distribution and controlling parameters of landslides triggered by the April 14, 2010 Yushu earthquake[J]. Journal of Engineering Geology, 19(4): 505—510(in Chinese).
许冲, 徐锡伟, 吴熙彦, 等. 2013. 2008年汶川地震滑坡详细编目及其空间分布规律分析[J]. 工程地质学报, 21(1): 25—44.
XU Chong, XU Xi-wei, WU Xi-yan, et al. 2013. Detailed catalog of landslides triggered by the 2008 Wenchuan earthquake and statistical analyses of their spatial distribution[J]. Journal of Engineering Geology, 21(1): 25—44(in Chinese).
许冲, 徐锡伟, 于贵华, 等. 2012. 玉树地震滑坡影响因子敏感性分析[J]. 科技导报, 30(1): 18—24.
XU Chong, XU Xi-wei, YU Gui-hua, et al. 2012. Susceptibility analysis of impact factors of landslides triggered by Yushu earthquake[J]. Science & Technology Review, 30(1): 18—24(in Chinese).
殷跃平, 张永双, 马寅生, 等. 2010. 青海玉树MS7.1地震地质灾害主要特征[J]. 工程地质学报, 18(3): 289—296.
YIN Yue-ping, ZHANG Yong-shuang, MA Yin-sheng, et al. 2010. Research on major characteristics of geohazards induced by the Yushu MS7.1 earthquake[J]. Journal of Engineering Geology, 18(3): 289—296(in Chinese).
于亚东, 韩永志. 2008. 标准物质应用指南[M]. 北京: 中国计量出版社.390.
YU Ya-dong, HAN Yong-zhi. 2008. Standard Material Application Guide[M]. Chinese Metrology Press, Beijing. 390(in Chinese).
周春景, 吴中海, 尼玛次仁, 等. 2014. 青海玉树MS7.1地震同震地表破裂构造[J]. 地质通报, 33(4): 551—566.
ZHOU Chun-jing, WU Zhong-hai, NIMA Ci-ren, et al. 2014. Structural analysis of the co-seismic surface ruptures associated with the Yushu MS7.1 earthquake, Qinghai Province[J]. Geological Bulletin of China, 33(4): 551—566(in Chinese).
Bourrier F, Dorren L, Nicot F, et al. 2009. Toward objective rockfall trajectory simulation using a stochastic impact mode[J]. Geomorphology, 110(3/4): 68—79.
Bull W B. 1996. Dating San Andreas Fault earthquakes with lichenometry[J]. Geology, 24: 111—114.
Bull W B. 2000. Lichenometry: A new way of dating and locating prehistorical earthquakes[J]. Quaternary Geochronology: Methods and Applications, 4: 521—526.
Bull W B, Brandon M T. 1998. Lichen dating of earthquake-generated regional rockfall events, Southern Alps, New Zealand[J]. Geological Society of America Bulletin, 110(1): 60—84.
Bull W B, King J, Kong F C, et al. 1994. Lichen dating of coseismic landslide hazards in alpine mountains[J]. Geomorphology, 10: 253—264.
Feng D, Robert H H, Cheng H, et al. 2010. U/Th dating of cold-seep carbonates: An initial comparison[J]. Deep-sea ResearchⅡ, 57: 2055—2060.
Gascoyne M. 1982. Geochemistry of the actinides and their daughters[A]. In: Ivanovich M, Harmon R S(eds). Uranium Series Disequilibrium: Applications to Environmental Problems. Clarendon Press, Oxford.34—61.
Han W X, Ma Z B, Lai Z P, et al. 2013. Wind erosion on the north-eastern Tibetan plateau: Constraints from OSL and U-Th dating of playa salt crust in the Qaidam Basin[A]. In: Lane S N(ed). Earth Surface Processes and Landforms. Published online in Wiley Online Library. doi: 10.1002/esp.3483.
Harmon R S, Rosholt J N. 1982. Igneous rocks[A]. In: Ivanovich M, Harmon R S(eds). Uranium Series Disequilibrium: Application to Environmental Problems. Clarendon Press, Oxford.145—164.
Kaufman A, Broecker W S. 1965. Comparison of 230Th and 14C ages for carbonate materials from Late Lahontan and Bonneville[J]. Journal of Geophysical Research, 70(16): 4039—4054.
Li M H, Fang X M, Yi C L, et al. 2010. Evaporite minerals and geochemistry of the upper 400m sediments in a core from the Western Qaidam Basin, Tibet[J]. Quaternary International, 218(1-2): 176—189.
Lin J C, Broecker W S, Anderson R F, et al. 1996. New 230Th/U and 14C ages from Lake Lahontan carbonates, Nevada, USA, and a discussion of the origin of initial thorium[J]. Geochimica et Cosmochimica Acta, 60(15): 2817—2832.
Ludwig, Kenneth R. 1991. ISOPLOT: A plotting and regression program for radiogenic-isotope data, Version 2.53. United States Geological Survey Open-File Report, Reston, VA.88—542.
Ludwig K R, Paces J B. 2002. Uranium-series dating of pedogenic silica and carbonate, Crater Flat, Nevada[J]. Geochimica et Cosmochimica Acta, 66(3): 487—506.
Ma N N, Ma Z B, Zheng M P, et al. 2012. 230Th dating of stem carbonate deposits from Tai Cuo Lake, western Tibetan plateau, China[J]. Quaternary International, 250: 55—62.
Osmond J K, Cowart J B. 1992. Ground water[A]. In: Ivanovich M, Harmon R S(eds). Uranium-series Dissequilibrium: Application to Earth, Marine, and Environmental Sciences(2nd Edition). Clarendon Press, Oxford. 290—333.
Sanna L, Forti P, Lauritzen S E. 2011. Preliminary U/Th dating and the evolution of gypsum crystals in Naica Caves(Mexico)[J]. Acta Carsologica, 40(1): 17—18.
Taylor S R, Mclennan S M. 1985. The Continental Crust: Its Composition and Evolution: An Examination of the Geochemical Record Preserved in Sedimentary Rocks[M]. Blackwell Scientific Publication, Oxford. 312.
Wedepohl K H. 1995. The composition of the continental crust[J]. Geochimica et Cosmochimica Acta, 59: 1217—1232.
Yang X P, Scuderi L A. 2010. Hydrological and climatic changes in deserts of China since the late Pleistocene[J]. Quaternary Research, 73: 1—9.
Zhang Y S, Dong S W, Hou C T, et al. 2013. Geohazards induced by the Lushan MS7.0 earthquake in Sichuan Province, southwest China: Typical examples, types and distributional characteristics[J]. Acta Geologica Sinica(English Edition), 87(3): 646—657.
Zhang Y S, Yao X, Xiong T Y, et al. 2010. Rapid identification and emergency investigation of surface ruptures and geohazards induced by the MS7.1 Yushu earthquake[J]. Acta Geologica Sinica-(English Edition), 84(6): 1315—1327. |