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Nonlinear, hysteretic rock elasticity: deriving modulus surfaces

机译:非线性滞后岩石弹性:导出模量表面

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The elastic response of many rocks to quasistatic stress changes is highly nonlinear and hysteretic, displaying discrete memory. Rocks also display unusual nonlinear response to dynamic stress changes. A model to describe the elastic behavior of rocks and other consolidated materials is called the Preisach-Mayergoyz (PM) space model. In contrast to the traditional analytic approach to stress-strain, the PM space picture establishes a relationship between the quasistatic data and a number density of mesoscopic elastic elements in the rock. The number density allows us to make quantitative predictions of dynamic elastic properties. Using the PM space model, we analyze a complex suite of quasistatic stress-strain data taken on Berea sandstone. We predict a dynamic bulk modulus and a dynamic shear modulus surface as a function of mean stress and shear stress. Our predictions for the dynamic moduli compare favorably to moduli derived from time of flight measurements.
机译:许多岩石对准静态应力变化的弹性响应是高度非线性和滞后的,显示出离散的记忆。岩石还表现出对动态应力变化的异常非线性响应。描述岩石和其他固结材料的弹性行为的模型称为Preisach-Mayergoyz(PM)空间模型。与传统的应力应变分析方法相比,PM空间图片在准静态数据与岩石中介观弹性元件的数量密度之间建立了关系。数密度使我们能够对动态弹性特性进行定量预测。使用PM空间模型,我们分析了在Berea砂岩上采集的一套复杂的准静态应力-应变数据。我们预测动态体积模量和动态剪切模量表面是平均应力和剪切应力的函数。我们对动态模量的预测优于从飞行时间测量中得出的模量。

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