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首页> 外文期刊>Pure and Applied Geophysics >Deriving Sensitivity Kernels of Coda-Wave Travel Times to Velocity Changes Based on the Three-Dimensional Single Isotropic Scattering Model
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Deriving Sensitivity Kernels of Coda-Wave Travel Times to Velocity Changes Based on the Three-Dimensional Single Isotropic Scattering Model

机译:基于三维单各向同性散射模型的尾声波传播时间对速度变化的敏感度核推导

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摘要

Recently, coda-wave interferometry has been used to monitor temporal changes in subsurface structures. Seismic velocity changes have been detected by coda-wave interferometry in association with large earthquakes and volcanic eruptions. To constrain the spatial extent of the velocity changes, spatial homogeneity is often assumed. However, it is important to locate the region of the velocity changes correctly to understand physical mechanisms causing them. In this paper, we are concerned with the sensitivity kernels relating travel times of coda waves to velocity changes. In previous studies, sensitivity kernels have been formulated for two-dimensional single scattering and multiple scattering, three-dimensional multiple scattering, and diffusion. In this paper, we formulate and derive analytical expressions of the sensitivity kernels for three-dimensional single-scattering case. These sensitivity kernels show two peaks at both source and receiver locations, which is similar to the previous studies using different scattering models. The two peaks are more pronounced for later lapse time. We validate our formulation by comparing it with finite-difference simulations of acoustic wave propagation. Our formulation enables us to evaluate the sensitivity kernels analytically, which is particularly useful for the analysis of body waves from deeper earthquakes.
机译:最近,尾声波干涉测量法已被用于监测地下结构的时间变化。通过尾声波干涉测量法探测到与大地震和火山喷发相关的地震速度变化。为了限制速度变化的空间范围,通常假设空间均匀性。然而,重要的是要正确定位速度变化的区域,以了解导致速度变化的物理机制。在本文中,我们关注的是尾声波传播时间与速度变化相关的敏感性核。在以往的研究中,已经制定了二维单散射和多重散射、三维多重散射和扩散的灵敏度核。本文提倡并推导了三维单散射情况下灵敏度核的解析表达式.这些灵敏度核在源和接收位置都显示出两个峰,这与之前使用不同散射模型的研究相似。这两个峰值在后期的流逝时间更为明显。我们通过将其与声波传播的有限差分模拟进行比较来验证我们的公式。我们的公式使我们能够分析敏感性核,这对于分析来自更深地震的体波特别有用。

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