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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Numerical Study on Earthquake Energy Partitioning: Relationships Among Radiated Energy, Seismic Moment, and Stress Drop
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Numerical Study on Earthquake Energy Partitioning: Relationships Among Radiated Energy, Seismic Moment, and Stress Drop

机译:地震能量分区的数值研究:辐射能量,地震时刻和压力下降的关系

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This paper aims at mechanistically studying some aspects of earthquake energy partitioning with a focus on the radiated energy (E-s) and seismic moment (M-o) relationships for investigating differences between estimates of average dynamic stress drop and static stress drop. We evaluate to what extent a relatively simple but analytically verified faulting simulation can explain such differences. We adopt a numerical methodology developed in the 2-D Universal Distinct Element Code to simulate fault slip with slip-weakening responses. A method is introduced for recording the ground reaction to slip and from which we discuss the energy partitioning in ideal cases of rupture. We examine a shallow strike-slip fault model where a locally peaked stress is gradually developed on the fault by applying tectonic stresses away from the fault surface until a rupture is initiated locally and propagated outward. The rupture is terminated when the available energy is exhausted by the fracture energy and friction work especially as the rupture is followed by a creep. With investigating roles of the available energy for rupture and the fracture energy, we display limited cases where Mo does not, at least proportionately, scale with Es. Results show this is because Mo, compared to Es, does not fully represent the energy available for initiating a rupture and the fracture energy consumed during its propagation. That is why estimates, with the radiation ratio eta(R) and rigidity mu, may significantly differ from (Delta sigma) over bar (d) and (Delta sigma) over bar (s).
机译:本文旨在机械地研究地震能量分区的一些方面,侧重于辐射能量(E-S)和地震时刻(M-O)关系,用于研究平均动态应力下降和静态应力下降之间的估计之间的差异。我们评估了一个相对简单但分析验证的故障模拟在多大程度上可以解释这种差异。我们采用二维通用不同元件代码中开发的数值方法,以模拟具有滑动弱化响应的故障滑动。引入了将地面反应记录到滑动的方法,从中讨论了理想破裂情况下的能量分配。我们检查一个浅击穿故障模型,通过将远离故障表面的构造应力施加到故障直到在本地发起并向外传播,通过将局部峰值应力逐渐逐渐显影。当可用的能量被裂缝能量和摩擦工作耗尽时,终止破裂终止,特别是由于破裂之后是蠕变。通过调查可用能量的角色破裂和裂缝能量,我们展示了Mo不成比例地与ES相等的有限情况。结果表明这是因为与es相比,莫不完全代表可用于启动破裂和在传播期间消耗的断裂能量的能量。这就是为什么估计的辐射比Eta和刚性Mu可以显着不同于(d)和(delta sigma)上方的rac(delta sigma)。

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