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Constraints on an intrusive system beneath the Soufriere Hills Volcano, Montserrat, from finite difference modeling of a controlled source seismic experiment

机译:蒙特塞拉特州Soufriere Hills火山下方侵入系统的约束,来自受控震源地震实验的有限差分建模

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摘要

TheSEA-CALIPSO wide-angle seismic experiment revealed a high velocity region beneath the island of Montserrat. Field recordings show a decrease in the amplitude of seismic signals crossing this high velocity region. We constrain the geometry and nature of this attenuating body, by forward modeling of the seismic wave field with a viscoelastic finite-difference method. We interpret the attenuation observed as caused by a scattering region, which we model as a stochastic perturbation of the velocity field with characteristic length scale of 0.4 km. The scattering region approximately coincides with the top part of the high velocity region and is estimated to have a volume of about 800 km 3. We argue that the scattering is caused by geological heterogeneities corresponding to a system of dikes and sills and to the complex structure of the volcanic edifice. Copyright © 2010 by the American Geophysical Union.
机译:SEA-CALIPSO广角地震实验揭示了蒙特塞拉特岛下方的一个高速区域。现场记录表明,穿过该高速区域的地震信号的幅度减小了。通过使用粘弹性有限差分方法对地震波场进行正演模拟,我们可以限制该衰减体的几何形状和性质。我们将观察到的衰减解释为由散射区域引起,我们将其建模为速度场的随机扰动,其特征长度标度为0.4 km。散射区大约与高速区的顶部重合,估计有约800 km 3的体积。我们认为,散射是由与堤坝,窗台和复杂结构相对应的地质异质性引起的。火山大厦。美国地球物理联盟©2010版权所有。

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