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Study of Love and Rayleigh waves from earthquakes with fault plane solutions or with known faulting. Part 1. A phase difference method based on a new model of earthquake source

机译:研究具有断层平面解或已知断层的地震爱波和瑞利波。第1部分。基于新震源模型的相差方法

摘要

For the purpose of examining the basic assumptions underlying the surface wave method of earthquake mechanism study, we investigated Love and Rayleigh waves from earthquakes with known faulting and/or fault plane solutions obtained from initial motion studies. In order to eliminate the effect of the source time function and finiteness of the fault and to concentrate on the nature of the earthquake force system and its space parameters, we are primarily concerned with the phase differences between Love and Rayleigh waves and their amplitude ratios.ududWe studied about 30 earthquakes which occurred in the Mediterranean region, California, and Japan. The results are given in Part 2, and the method used is described in the present paper. The theoretical phase and amplitude of Love and Rayleigh waves were computed on the basis of observed faulting or fault plane solution under various hypotheses about the equivalent force system. Then, we obtained from the record, the Fourier phase difference of Love and Rayleigh waves, corrected it for propagation in a layered earth and compared it with the corresponding theoretical value.ududIn computing the theoretical values, we assumed a homogeneous half space for Rayleigh waves. For Love waves, the layered structure of the earth was taken into account in an approximate way. We have constructed a table of the theoretical values for all possible parameters of fault system and also for various focal depths. A part of the table is given in a concise form in Part 3.ududThe measurement of the phase difference between Love and Rayleigh waves was made by two methods. One is the stationary phase analysis, first applied to seismograms by Brune, Nafe and Oliver (1960), and the other is a filtering-correlation method. The latter method is appropriate for those records where the waves are less dispersed and noise is a factor.ududIt was found that the single couple hypothesis fails to explain the observations on surface waves, and must be modified in some way. A modified single couple hypothesis is proposed which appears to explain the observations generally better than the double couple hypothesis as will be shown in Part 2.
机译:为了检验地震机制研究的面波方法所依据的基本假设,我们调查了具有初始运动研究获得的已知断层和/或断层平面解的地震Love波和瑞利波。为了消除震源时间函数和断层有限性的影响,并集中于地震力系统的性质及其空间参数,我们主要关注洛夫和瑞利波之间的相位差及其振幅比。 ud ud我们研究了大约30个在地中海地区,加利福尼亚和日本发生的地震。结果在第2部分中给出,并在本文中描述了所使用的方法。根据关于等效力系统的各种假设,在观察到的断层或断层平面解的基础上,计算了Love和Rayleigh波的理论相位和振幅。然后,我们从记录中获得了Love和Rayleigh波的傅立叶相差,对其进行了校正以便在层状地球中传播,并将其与相应的理论值进行比较。 ud ud在计算理论值时,我们假设了同质半空间对于瑞利波。对于Love波,以近似的方式考虑了地球的分层结构。我们为故障系统的所有可能参数以及各种焦深构造了理论值表。在第3部分中以简洁的形式给出了表格的一部分。 ud ud使用两种方法对Love和Rayleigh波之间的相位差进行了测量。一种是固定相分析,首先由Brune,Nafe和Oliver(1960)应用于地震图,另一种是滤波相关方法。后一种方法适用于那些波分散程度较小且噪声是一个因素的记录。 ud ud发现单对假设无法解释表面波的观测结果,必须以某种方式进行修改。提出了修改后的单对子假设,这似乎比第二对子假设更好地解释了观测结果,如第二部分所示。

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