H/V法在地震微区划问题中的适用性

IF 0.3 Q4 GEOCHEMISTRY & GEOPHYSICS
A. V. Kalinina, S. M. Ammosov, R. E. Tatevossian, V. V. Bykova
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引用次数: 0

摘要

本文讨论了地震动水平-垂直谱比(H/V法)在估计地震烈度增量和追踪被土层覆盖的基岩面方面的适用性。第一个问题是典型的地震微区划问题;二是地质剖面上部构造填图。作者评估了使用单个站点来估计强度增量的可能性,而无需在站点的给定点上与基于参考岩石的记录同步数据。结果表明,这种方法是无效的,因为一天内H/V比的最大变化可达2.7次;强度为0.8的度将与这种变化相对应。同时表明,各土层的共振频率是稳定的。如果在剖面表面的某些点上知道地震波的平均速度,就可以有把握地追踪下伏基岩顶部的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Applicability of the H/V Method in the Seismic Microzoning Problem

Applicability of the H/V Method in the Seismic Microzoning Problem

The paper discusses the applicability of the horizontal-to-vertical spectral ratio for ground motion (H/V method) to estimate the seismic intensity increment and trace the bedrock surface covered by soil layers. The first issue is the classic seismic microzoning problem; the second is related to structural mapping of the upper part of the geological profile. The authors assess the possibility of using a single station to estimate the intensity increment without synchronization of data at a given point at a site with records based on reference rocks. It is shown that such an approach is invalid, because the maximum variations in the H/V ratio during a day may reach 2.7 times; a degree of intensity of 0.8 will correspond to such variation. At the same time, it is shown that the resonance frequencies of soil layers are stable. If the mean velocities of seismic waves are known at some points of profile surface, the position of the underlying bedrock top can be traced with confidence.

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来源期刊
Seismic Instruments
Seismic Instruments GEOCHEMISTRY & GEOPHYSICS-
自引率
44.40%
发文量
45
期刊介绍: Seismic Instruments is a journal devoted to the description of geophysical instruments used in seismic research. In addition to covering the actual instruments for registering seismic waves, substantial room is devoted to solving instrumental-methodological problems of geophysical monitoring, applying various methods that are used to search for earthquake precursors, to studying earthquake nucleation processes and to monitoring natural and technogenous processes. The description of the construction, working elements, and technical characteristics of the instruments, as well as some results of implementation of the instruments and interpretation of the results are given. Attention is paid to seismic monitoring data and earthquake catalog quality Analysis.
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