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Collaborative Research: Structural Architecture and Evolutionary Plate-Boundary Processes along the San Jacinto Fault Zone

Collaborative Research: Structural Architecture and Evolutionary Plate-Boundary Processes along the San Jacinto Fault Zone
合作研究:圣哈辛托断裂带沿线的结构体系和演化板块边界过程
批准号:
0908310
负责人:
Zhigang Peng
金额:
$21.86万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2014-08-31

项目摘要

项目成果

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相关文献

中文摘要
翻译
了解地震物理学是预测断层短期行为的关键一步,这对减轻灾害有明显的影响。这是一个项目,其目标是研究与地震破裂有关的动力学。将要进行的研究将对主要断裂带的活动方式提供更全面的限制。具体来说,该项目将结合南加州圣哈辛托断层(SJF)的详细成像,使用阵列来描述地下断层带的特征。它将结合地表露头和断裂带制图、古地震分析、地壳变形的GPS分析和地震传播的理论工作,以了解断层破坏、不同岩石类型并置和分割等因素如何影响断裂带的行为。主要研究人员汇集了目前有关断裂过程的观点,并概述了一种方法,该方法可能能够定量理解断层带结构的演变和活跃变形区域的相关变形现象(地震活动性,应变场)。这种方法需要一个框架来解释具有不断变化的几何和材料特性的断层,以及孕震带和下垫粘弹性基底之间随时间变化的相互作用。
英文摘要
Understanding earthquake physics is a critical step on the road to forecasting the short-term behavior of faults with obvious consequences for hazard mitigation. This is a project whose goal is to examine the dynamics associated with earthquake rupture. The studies to be carried out will provide much more comprehensive constraints on the way that a major fault zone behaves. Specifically, the project will combine detailed imaging of the San Jacinto Fault (SJF) in Southern California using an array to characterize the fault zone in the subsurface. It will couple this with surface outcrop and mapping of the fault zone, paleoseismic analysis, GPS analysis of crustal deformation, and theoretical work on seismic propagation to understand how factors such as fault damage, juxtaposition of different rock types, and segmentation affect the behavior of the fault zone. The Principal Investigators bring together current ideas about the rupture process and outline an approach that may be able to provide a quantitative understanding of the evolution of fault zone structures and related deformation phenomena (seismicity, strain fields) in actively deforming regions. This approach requires a framework that accounts for faults with evolving geometrical and material properties, as well as time-dependent interactions between the seismogenic zone and underlying viscoelastic substrate.
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