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On the Large Scale Spatial Heterogeneity of Great Shallow Earthquakes and Plate Coupling Mechanism in Chinese Mainland and Its Adjacent Areas 被引量:1

On the Large Scale Spatial Heterogeneity of Great Shallow Earthquakes and Plate Coupling Mechanism in Chinese Mainland and Its Adjacent Areas
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摘要 Research on the large scale spatial heterogeneity of great intraplate shallow earthquakes on the Chinese mainland and adjacent areas discussed in this paper shows that(1)there are four main high seismicity areas:the North China seismic area in the eastern part of China(30°-42°N),the Southeastern Coast seismic area in the eastern part of China(19°-25°N),the North-South seismic area in the western part of China and its adjacent areas(Burma-China-Mongolia),and the Central Asian seismic area in the western part of China and its adjacent areas(Pamir-Tianshan Mountains-Baikal);(2)the four intraplate seismic areas that are approximately perpendicular to those sections of the Eurasia plate boundary that surrounds the Chinese mainland and its adjacent areas,where the Eurasia plate has a strong seismic coupling with the North America-Pacific Ocean-Philippine Sea plate and the India plate; and(3)the large scale spatial heterogeneity of intraplate seismicity in China and its adjacent areas that might be Research on the large scale spatial heterogeneity of great intraplate shallow earthquakes on the Chinese mainland and adjacent areas discussed in this paper shows that(1)there are four main high seismicity areas:the North China seismic area in the eastern part of China(30°-42°N),the Southeastern Coast seismic area in the eastern part of China(19°-25°N),the North-South seismic area in the western part of China and its adjacent areas(Burma-China-Mongolia),and the Central Asian seismic area in the western part of China and its adjacent areas(Pamir-Tianshan Mountains-Baikal);(2)the four intraplate seismic areas that are approximately perpendicular to those sections of the Eurasia plate boundary that surrounds the Chinese mainland and its adjacent areas,where the Eurasia plate has a strong seismic coupling with the North America-Pacific Ocean-Philippine Sea plate and the India plate; and(3)the large scale spatial heterogeneity of intraplate seismicity in China and its adjacent areas that might be controlled by nonuniform stress states at different sections of the plate boundary.
出处 《Earthquake Research in China》 1997年第3期7-15,共9页 中国地震研究(英文版)
基金 This project was sponsored by the Joint Earthquake Science Foundation, China
关键词 HETEROGENEOUS SEISMICITY Coupling MECHANISM Chinese MAINLAND Heterogeneous seismicity, Coupling mechanism, Chinese mainland
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同被引文献14

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  • 2Zang,S.X.,Wu,Z.L.,Ning,J.Y.The interaction of plates around China and its effect on the stress field in China,Part Ⅱ:The influence of Indian Plate. ACTAC,eophysica Sinica . 1992
  • 3Xu Z H,Wu S W.A study on present-day tectonic stress in the South Yellow Sea and East China sea region. Acta GeophysicaSinica . 1997
  • 4Zang S X,Chen Q Z,Huang J S.Distribution of earthquake, stress state and interaction of the plates in the southern TaiwanPhilippines area. Seismology and Geophysics . 1994
  • 5Zang S X,Ning J Y,Liu B C, et al.The interaction of plates around China and its etltct on the stress field in China; Part one, theintluence of Pacific Plate and Philippine Sea Pate. Sical Progress in the 1980’’s- In Memory of Fu Chengyi 8C-years-oldBirthday . 1989
  • 6Zhang G M.The cyclic characteristic of strong earthquakes in Chinese mainland. Set’’Smologr and Geology . 1987
  • 7Zhang G M.Research on seismic total position of Chinese mainland area. Report on China Seismic Trend Pngdiction Research (1989) . 1989
  • 8Lithospheric hoamics Compendium of China. . 1987
  • 9Mei S R.,Che S.Numerical modeling of direction and values on modern tectonic stress field in China and its relationship with theseismic actiVity. Mei Shi-Rong Seismic Science Research Paper COllections . 1993
  • 10Sato K,Bhatia S C,Gupta H K.Three-dimensional numerical modeling of ’’deformation and stress in the Himalnya Plateau with asimple geometry. Journal of Physics of the Earth . 1996

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