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A three-dimensional dislocation model for the San Fernando, California, earthquake of February 9, 1971

机译:1971年2月9日,加利福尼亚州圣费尔南多地震的三维位错模型

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摘要

The data from five strong-motion accelerograph stations centered above and surrounding the fault are used to develop an approximate three-dimensional dislocation model for the San Fernando earthquake. In the resulting model, the dislocation originates near the instrumentally determined epicenter at a depth of 9.2 km and then propagates southward and upward with a velocity of 2 km/sec. Calculated dislocation amplitudes of about 10 m in the hypocentral region have been found to decay to about 1 m toward the center of the fault and then build up again to about 6 m just before the fault intersects the ground surface in the San Fernando Valley. The assumed fault area of 130 km^2 and the assumed rigidity µ = 3 × 10^(11) dyne/cm^2 give a moment M_0 = 1.53 × 10^(26) dyne-cm. This study indicates that, with several strong-motion accelerographs suitably located in the epicentral region, it is possible to find a kinematic faulting process associated with the periods of ground motion which are longer than about 1 sec.
机译:来自位于断层上方和围绕断层的五个强运动加速度计站的数据被用于开发圣费尔南多地震的近似三维位错模型。在生成的模型中,位错起源于仪器确定的震中附近,深度为9.2 km,然后以2 km / sec的速度向南和向上传播。已经发现,在震中区计算出的位错振幅约为10 m,朝断层中心衰减至约1 m,然后在断层与San Fernando Valley地表相交之前再次累积至约6 m。假定的断层面积为130 km ^ 2,假定的刚度µ = 3×10 ^(11)达因/ cm ^ 2,则力矩M_0 = 1.53×10 ^(26)达因-cm。这项研究表明,通过适当地将几个强运动加速度计放置在震中区域,可以发现与地面运动周期相关的运动断层过程,而该运动断层过程的时间长于大约1秒。

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    Trifunac M. D.;

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  • 年度 1974
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