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Is the Earth Lazy? A review of work minimization in fault evolution

机译:地球是懒惰的吗?故障演化中的最小化工作回顾

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The principle of work minimization has been used in various forms to account for the development of active fault systems within a wide range of tectonic settings. We review the successes, challenges and implications learned from previous applications of work minimization. Examination of the energy budget provides insight into the competing influences of different processes within fault systems at a variety of scales. We present each work budget component with considerations for numerical implementation. Additionally, we demonstrate numerical implementation by solving for the energy budgets and finding the most efficient propagation paths of a joint and several faults. Consideration of the energy budget captures growth patterns that are consistent with both laboratory observations and theoretical predictions using the energy release rate, G. Unlike using G. work minimization is not limited to collinear growth. In comparison with predictions using Coulomb failure planes, work minimization eliminates uncertainty in predicting fault propagation by (1) evaluating the trade-off between tensile and shear failure ahead of the fault and (2) avoiding the ambiguity introduced by the two potential Coulomb failure planes. Application of work minimization to faulting demonstrates the effectiveness of this approach in predicting both the orientation and timing of fault propagation.
机译:最小化工作原理已以各种形式用于解释在广泛的构造环境中活动断层系统的发展。我们回顾了从以前的工作最小化应用中学到的成功,挑战和启示。能源预算的检查可以洞察故障系统在各种规模内不同过程的竞争影响。我们介绍了每个工作预算组成部分,并考虑了数字实现的注意事项。此外,我们通过求解能量预算并找到关节和几个断层的最有效传播路径来演示数值实现。能源预算的考虑使用能源释放速率G来捕获与实验室观察和理论预测一致的增长模式。与使用G相比,工作最小化不仅限于共线增长。与使用库仑破坏平面进行预测相比,通过(1)评估断层之前的拉伸破坏和剪切破坏之间的权衡,以及(2)避免了两个潜在的库仑破坏平面引入的歧义,工作最小化消除了预测断层传播的不确定性。 。将工作最小化应用于故障证明了该方法在预测故障传播的方向和时机方面的有效性。

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