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Physics of Earthquake Disaster: From Crustal Rupture to Building Collapse

机译:地震灾害物理学:从地壳破裂到建设崩溃

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Earthquakes of relatively greater magnitude may cause serious, sometimes unexpected failures of natural and human-made structures, either on the surface, underground, or even at sea. In this review, by treating several examples of extraordinary earthquake-related failures that range from the collapse of every second building in a commune to the initiation of spontaneous crustal rupture at depth, we consider the physical background behind the apparently abnormal earthquake disaster. Simple but rigorous dynamic analyses reveal that such seemingly unusual failures actually occurred for obvious reasons, which may remain unrecognized in part because in conventional seismic analyses only kinematic aspects of the effects of lower-frequency seismic waves below 1 Hz are normally considered. Instead of kinematics, some dynamic approach that takes into account the influence of higher-frequency components of waves over 1 Hz will be needed to anticipate and explain such extraordinary phenomena and mitigate the impact of earthquake disaster in the future.
机译:相对较大的地震可能导致严重,有时是天然和人造结构的意外失败,无论是在地面,地下,甚至在海上。在本次审查中,通过处理非凡的地震相关失败的若干例子,这些失败的范围从公共交流中的每一次建筑物的每秒崩溃到深度的自发地壳破裂的启动中,我们认为身体灾害明显异常异常的物理背景。简单但严谨的动态分析表明,这种看似异常的故障实际上出现了明显的原因,这可能部分不识别,因为在常规地震分析中,通常仅考虑低于1Hz以下低频地震波的效果的运动方面。为了预期并解释这种非凡现象,需要考虑到1 Hz的高频分量的影响,而不是运动学,而不是运动学,而不是运动学。

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