The Maximum Effective Moment Criterion (MEMC) and Its Implications in Structural Geology
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Acknowledgments This work is financed by the grants of the National Natural Science Foundation of China (Grant No 40272084, 40472101 and 40572123). We would like to thank helpful discussions with Profs. Ding Zhongyi, Yin An, Cai Yongen and Dr. Wang Shimin. We are great indebted to our late teacher, Prof. Wang Ren, for his encouragement. Review comments by an anonymous reviewer are appreciated.


The Maximum Effective Moment Criterion (MEMC) and Its Implications in Structural Geology
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    1 Introduction A high-level generalization of structures in the earth crust has been given by Ramsay (1980): low-angle thrusts in the brittle upper crust and high-angle reverse shear zones in the ductile middle-lower crust are formed in contractional regimes; high-angle normal faults in the brittle upper crust and low-angle normal shear zones in the ductile middle- lower crust are formed in extensional regimes. The formation of low-angle thrusts and high-angle normal faults in brittle domains …

    Abstract:

    1 Introduction A high-level generalization of structures in the earth crust has been given by Ramsay (1980): low-angle thrusts in the brittle upper crust and high-angle reverse shear zones in the ductile middle-lower crust are formed in contractional regimes; high-angle normal faults in the brittle upper crust and low-angle normal shear zones in the ductile middle- lower crust are formed in extensional regimes. The formation of low-angle thrusts and high-angle normal faults in brittle domains …

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ZHENG Yadong,*,WANG Tao and WANG Xinshe The Key Laboratory of Orogenic Belts and Crustal Evolution, School of Earth and Space Sciences, Peking University, Beijing Institute of Geology, Chinese Academy of Geological Sciences, Beijing .2006. The Maximum Effective Moment Criterion (MEMC) and Its Implications in Structural Geology[J]. ACTA GEOLOGICA SINICA(English edition),80(1):70~78

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  • 收稿日期:2005-09-05
  • 最后修改日期:2005-10-24
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