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地震破裂的确定性本质。

The deterministic nature of earthquake rupture.

作者信息

Olson Erik L, Allen Richard M

机构信息

Department of Geology and Geophysics, University of Wisconsin Madison, 1215 W. Dayton Street, Madison, Wisconsin 53706, USA.

出版信息

Nature. 2005 Nov 10;438(7065):212-5. doi: 10.1038/nature04214.

Abstract

Understanding the earthquake rupture process is central to our understanding of fault systems and earthquake hazards. Multiple hypotheses concerning the nature of fault rupture have been proposed but no unifying theory has emerged. The conceptual hypothesis most commonly cited is the cascade model for fault rupture. In the cascade model, slip initiates on a small fault patch and continues to rupture further across a fault plane as long as the conditions are favourable. Two fundamental implications of this domino-like theory are that small earthquakes begin in the same manner as large earthquakes and that the rupture process is not deterministic--that is, the size of the earthquake cannot be determined until the cessation of rupture. Here we show that the frequency content of radiated seismic energy within the first few seconds of rupture scales with the final magnitude of the event. We infer that the magnitude of an earthquake can therefore be estimated before the rupture is complete. This finding implies that the rupture process is to some degree deterministic and has implications for the physics of the rupture process.

摘要

了解地震破裂过程是我们理解断层系统和地震灾害的核心。关于断层破裂性质的多种假说已被提出,但尚未形成统一的理论。最常被引用的概念假说是断层破裂的级联模型。在级联模型中,滑动起始于一个小的断层面片,只要条件有利,就会继续在断层面上进一步破裂。这种多米诺骨牌式理论的两个基本含义是,小地震与大地震的起始方式相同,并且破裂过程是不确定的——也就是说,在破裂停止之前,地震的大小无法确定。在这里,我们表明,破裂最初几秒内辐射地震能量的频率成分与事件的最终震级成比例。我们推断,因此可以在破裂完成之前估计地震的震级。这一发现意味着破裂过程在某种程度上是确定性的,并且对破裂过程的物理学有影响。

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