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High-frequency imaging of elastic contrast and contact area with implications for naturally observed changes in fault properties

机译:弹性对比和接触区域的高频成像,可自然观察断层性质的变化

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During localized slip of a laboratory fault we simultaneously measure the contact area and the dynamic fault normal elastic stiffness. One objective is to determine conditions where stiffness may be used to infer changes in area of contact during sliding on nontransparent fault surfaces. Slip speeds between 0.01 and 10 μm/s and normal stresses between 1 and 2.5 MPa were imposed during velocity step, normal stress step, and slide-hold-slide tests. Stiffness and contact area have a linear interdependence during rate stepping tests and during the hold portion of slide-hold-slide tests. So long as linearity holds, measured fault stiffness can be used on nontransparent materials to infer changes in contact area. However, there are conditions where relations between contact area and stiffness are nonlinear and nonunique. A second objective is to make comparisons between the laboratory- and field-measured changes in fault properties. Time-dependent changes in fault zone normal stiffness made in stress relaxation tests imply postseismic wave speed changes on the order of 0.3% to 0.8% per year in the two or more years following an earthquake; these are smaller than postseismic increases seen within natural damage zones. Based on scaling of the experimental observations, natural postseismic fault normal contraction could be accommodated within a few decimeter wide fault core. Changes in the stiffness of laboratory shear zones exceed 10% per decade and might be detectable in the field postseismically.
机译:在实验室断层的局部滑动过程中,我们同时测量接触面积和动态断层的法向弹性刚度。一个目标是确定在不透明的断层表面上滑动期间可以使用刚度来推断接触面积变化的条件。在速度阶跃,法向应力阶跃和滑动保持滑动实验中施加了0.01至10μm/ s的滑动速度和1至2.5 MPa的正应力。刚度和接触面积在速率步进测试和滑动-保持-滑动测试的保持部分之间具有线性的相互依赖性。只要保持线性,就可以在非透明材料上使用测得的断层刚度来推断接触面积的变化。但是,在某些情况下,接触面积和刚度之间的关系是非线性和非唯一的。第二个目的是在实验室和现场测量的断层特性变化之间进行比较。在应力松弛试验中,断层带的正常刚度随时间的变化意味着在地震发生后的两年或更长时间里,地震后的波速每年每年变化0.3%到0.8%。这些比在自然破坏区内看到的地震后的增加要小。根据实验观测结果的扩展,可以将自然地震后断层的正常收缩容纳在几分米宽的断层核心内。实验室剪切区的刚度变化每十年超过10%,并且可能在地震后现场检测到。

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