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Earthquake cycles and physical modeling of the process leading up to a large earthquake

机译:地震周期和导致大地震的过程的物理模型

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A thorough discussion is made on what the rational constitutive law for earthquake ruptures ought to be from the standpoint of the physics of rock friction and fracture on the basis of solid facts observed in the laboratory. From this standpoint, it is concluded that the constitutive law should be a slip-dependent law with parameters that may depend on slip rate or time. With the long-term goal of establishing a rational methodology of forecasting large earthquakes, the entire process of one cycle for a typical, large earthquake is modeled, and a comprehensive scenario that unifies individual models for intermediate- and short-term (immediate) forecasts is presented within the framework based on the slip-dependent constitutive law and the earthquake cycle model. The earthquake cycle includes the phase of accumulation of elastic strain energy with tectonic loading (phase II), and the phase of rupture nucleation at the critical stage where an adequate amount of the elastic strain energy has been stored (phase III). Phase II plays a critical role in physical modeling of intermediate-term forecasting, and phase III in physical modeling of short-term (immediate) forecasting. The seismogenic layer and individual faults therein are inhomogeneous, and some of the physical quantities inherent in earthquake ruptures exhibit scale-dependence. It is therefore critically important to incorporate the properties of inhomogeneity and physical scaling, in order to construct realistic, unified scenarios with predictive capability. The scenario presented may be significant and useful as a necessary first step for establishing the methodology for forecasting large earthquakes.
机译:基于在实验室中观察到的可靠事实,从岩石摩擦和断裂的物理学观点出发,对应该确定地震破裂的合理本构律进行了透彻的讨论。从这个角度出发,可以得出结论,本构定律应该是依赖于滑动的定律,其参数可能取决于滑动率或时间。以建立合理的预测大地震的方法的长期目标为基础,对典型的大地震的一个周期的整个过程进行了建模,并建立了一个综合方案,该模型将单个模型用于中短期(即时)预测进行了统一在基于滑移的本构定律和地震周期模型的框架内给出了地震波。地震周期包括具有构造载荷的弹性应变能积累阶段(阶段II),以及在关键阶段已经存储了足够数量的弹性应变能的破裂成核阶段(阶段III)。第二阶段在中期预测的物理模型中起关键作用,第三阶段在短期(立即)预测的物理模型中起关键作用。地震发生层和其中的个别断层是不均匀的,地震破裂中固有的一些物理量表现出尺度依赖性。因此,至关重要的是要融合不均匀性和物理缩放的属性,以构建具有预测能力的现实,统一的场景。所介绍的场景对于建立大地震预报方法的必要的第一步可能是重要而有用的。

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