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Induced seismicity provides insight into why earthquake ruptures stop

机译:诱发地震作用可洞悉地震破裂的原因

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摘要

Injection-induced earthquakes pose a serious seismic hazard but also offer an opportunity to gain insight into earthquake physics. Currently used models relating the maximum magnitude of injection-induced earthquakes to injection parameters do not incorporate rupture physics. We develop theoretical estimates, validated by simulations, of the size of ruptures induced by localized pore-pressure perturbations and propagating on prestressed faults. Our model accounts for ruptures growing beyond the perturbed area and distinguishes self-arrested from runaway ruptures. We develop a theoretical scaling relation between the largest magnitude of self-arrested earthquakes and the injected volume and find it consistent with observed maximum magnitudes of injection-induced earthquakes over a broad range of injected volumes, suggesting that, although runaway ruptures are possible, most injection-induced events so far have been self-arrested ruptures.
机译:注入诱发的地震带来了严重的地震危险,但同时也为深入了解地震物理提供了机会。当前使用的将注入诱发的地震的最大震级与注入参数相关的模型并未包含破裂物理学。我们开发了通过模拟验证的理论估计值,该估计值由局部孔隙压力扰动和在预应力断层中传播引起的破裂的大小决定。我们的模型解决了破裂超出扰动区域的问题,并将自逮捕和失控破裂区分开来。我们建立了最大的自逮捕地震和注入量之间的理论比例关系,发现它与在大范围注入量中观察到的注入诱发地震的最大量值一致,这表明,尽管失控破裂是可能的,但大多数迄今为止,注射引起的事件是自发性破裂。

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