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In situ observations of velocity changes in response to tidal deformation from analysis of the high-frequency ambient wavefield

机译:根据高频环境波场分析对潮汐变形响应速度变化的原位观测

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We report systematic seismic velocity variations in response to tidal deformation. Measurements are made on correlation functions of the ambient seismic wavefield at 2-8 Hz recorded by a dense array at the site of the Pinon Flat Observatory, Southern California. The key observation is the dependence of the response on the component of wave motion and coda lapse time . Measurements on the vertical correlation component indicate reduced wave speeds during periods of volumetric compression, whereas data from horizontal components show the opposite behavior, compatible with previous observations. These effects are amplified by the directional sensitivities of the different surface wave types constituting the early coda of vertical and horizontal correlation components to the anisotropic behavior of the compliant layer. The decrease of the velocity (volumetric) strain sensitivity S with indicates that this response is constrained to shallow depths. The observed velocity dependence on strain implies nonlinear behavior, but conclusions regarding elasticity are more ambiguous. The anisotropic response is possibly associated with inelastic dilatancy of the unconsolidated, low-velocity material above the granitic basement. However, equal polarity of vertical component velocity changes and deformation in the vertical direction indicate that a nonlinear Poisson effect is similarly compatible with the observed response pattern. Peak relative velocity changes at small are 0.03%, which translates into an absolute velocity strain sensitivity of S approximate to 5 x 10(3) and a stress sensitivity of 0.5 MPa-1. The potentially evolving velocity strain sensitivity of crustal and fault zone materials can be studied with the method introduced here.
机译:我们报告了响应潮汐变形的系统地震速度变化。在由南加州Pinon Flat天文台站点上的密集阵列记录的2-8 Hz环境地震波场的相关函数上进行测量。关键的观察是响应对波动成分和尾气消散时间的依赖性。垂直相关分量的测量结果表明,在体积压缩期间波速降低,而水平分量的数据显示出相反的行为,与以前的观察结果一致。这些影响被构成垂直和水平相关分量的早期尾迹的不同表面波类型的方向敏感性对柔顺层各向异性行为的影响所放大。速度(体积)应变敏感度S的减小表明该响应被约束到较浅的深度。观察到的速度对应变的依赖性暗示了非线性行为,但是关于弹性的结论则更加模棱两可。各向异性反应可能与花岗岩基底上方未固结的低速材料的非弹性扩张性有关。但是,垂直分量速度变化和垂直方向变形的极性相等,表明非线性泊松效应与观察到的响应模式相似。小时的峰值相对速度变化为0.03%,这意味着S的绝对速度应变敏感度约为5 x 10(3),应力敏感度为0.5 MPa-1。地壳和断层带材料可能演化的速度应变敏感性可以通过此处介绍的方法进行研究。

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