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Critical Sensitivity and Trans-scale Fluctuations in Catastrophic Rupture

机译:灾难性破裂中的临界敏感度和跨尺度波动

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摘要

Rupture in the heterogeneous crust appears to be a catastrophe transition. Catastrophic rupture sensitively depends on the details of heterogeneity and stress transfer on multiple scales. These are difficult to identify and deal with. A a result the threshold of earthquake-like rupture presents uncertainty. This may be the root of the difficulty of earthquake prediction. Based on a coupled pattern mapping model, we represent critical sensitivity and trans-scale fluctuations associated with catastrophic rupture. Critical sensitivity means that a system may become significantly sensitive near catastrophe transition. Trans-scale fluctuations mean that the level of stress fluctuations increases strongly and the spatial scale of stress and damage fluctuations evolves from the mesoscopic heterogeneity scale to the macroscopic scale as the catastrophe regime is approached. The underlying mechanism behind critical sensitivity and trans-scale fluctuations is the coupling effect between heterogeneity and dynamical nonlinearity. Such features may provide clues for prediction of catastrophic rupture, like material failure and great earthquakes. Critical sensitivity may be the physical mechanism underlying a promising earthquake forecasting method, the load-unload response ratio (LURR).
机译:异质地壳破裂似乎是一场巨变。灾难性破裂敏感地取决于异质性和应力转移的详细程度。这些很难识别和处理。结果,类似地震的破裂阈值呈现不确定性。这可能是地震预报困难的根源。基于耦合模式映射模型,我们表示与灾难性破裂相关的临界灵敏度和跨标度波动。临界敏感度意味着系统可能在巨灾转变附近变得非常敏感。跨尺度的波动意味着应力波动的水平急剧增加,并且随着趋近灾难性制度,应力和破坏波动的空间尺度从介观的异质性尺度演变为宏观尺度。临界灵敏度和跨尺度波动背后的潜在机制是异质性和动力学非线性之间的耦合效应。这些特征可能为预测灾难性破裂提供线索,例如材料破裂和大地震。临界敏感度可能是有前途的地震预测方法的基础物理机制,即荷载-荷载响应比(LURR)。

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