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倾斜断层上的地震:对称性破缺的影响。

Earthquakes on dipping faults: the effects of broken symmetry.

作者信息

Oglesby DD, Archuleta RJ, Nielsen SB

机构信息

D. D. Oglesby and R. J. Archuleta, Institute for Crustal Studies and Department of Geological Sciences, University of California at Santa Barbara, Santa Barbara, CA 93106, USA. S. B. Nielsen, Institute for Crustal Studies and Materials Research Laborat.

出版信息

Science. 1998 May 15;280(5366):1055-9. doi: 10.1126/science.280.5366.1055.

Abstract

Dynamic simulations of earthquakes on dipping faults show asymmetric near-source ground motion caused by the asymmetric geometry of such faults. The ground motion from a thrust or reverse fault is larger than that of a normal fault by a factor of 2 or more, given identical initial stress magnitudes. The motion of the hanging wall is larger than that of the footwall in both thrust (reverse) and normal earthquakes. The asymmetry between normal and thrust (reverse) faults results from time-dependent normal stress caused by the interaction of the earthquake-generated stress field with Earth's free surface. The asymmetry between hanging wall and footwall results from the asymmetric mass and geometry on the two sides of the fault.

摘要

倾斜断层地震的动态模拟表明,此类断层的不对称几何形状会导致近源地面运动不对称。在初始应力大小相同的情况下,逆冲断层或反转断层产生的地面运动比正断层的大两倍或更多。在逆冲(反转)地震和正断层地震中,上盘的运动都比下盘的大。正断层和逆冲(反转)断层之间的不对称是由地震产生的应力场与地球自由表面相互作用引起的随时间变化的正应力导致的。上盘和下盘之间的不对称是由断层两侧质量和几何形状的不对称造成的。

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