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Earthquake slip distribution: A statistical model

机译:地震滑动分配:统计模型

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The purpose of this paper is to interpret slip statistics in a framework of extended earthquake sources. We first discuss deformation pattern of the Earth's surface from earthquakes and suggest that continuum versus block motion controversy can be reconciled by a model of the fractal distribution of seismic sources. We consider earthquake slip statistical distributions as they can be inferred from seismic moment-frequency relations and geometrical scaling for earthquakes. Using various assumptions on temporal earthquake occurrence, these distributions are synthesized to evaluate the accuracy of geologic fault slip determinations and to estimate uncertainties in long-term earthquake patterns based on paleoseismic data. Because the seismic moment distribution is a power law (Pareto), a major part of the total seismic moment is released by major earthquakes, M ≥ 1019.5 N m (moment magnitude m ≥ 7); for these large earthquakes the rupture is confined to the upper brittle crust layer. We review the various moment-frequency and earthquake scaling relationships and apply them to infer the slip distribution at area- and site-specific regions. Simulating the seismic moment and strain accumulation process demonstrates that some synthetics can be interpreted as examples of a quasiperiodic sequence. We demonstrate the application of the derived slip statistical relations by analyzing the slip distribution and history of the San Andreas fault at Wrightwood, California.
机译:本文的目的是在扩展地震来源框架中解释滑移统计数据。我们首先讨论地震地震表面的变形模式,并建议通过地震来源分形分布的模型来协调连续性与块运动争议。我们考虑地震滑动统计分布,因为它们可以从地震矩频关系和地震的几何缩放推断出来。在颞震动发生时使用各种假设,合成这些分布,以评估地质故障滑动测定的准确性,并基于古姿态数据估计长期地震模式中的不确定性。由于地震时刻分布是一种权力法(Pareto),因此各大地震释放的主要部分的主要部分是大地震,M≥1019.5n m(时刻幅度m≥7);对于这些大地震,破裂限制在上脆性地壳层。我们审查了各种时刻频率和地震缩放关系,并将其应用于在区域和场地特定区域推断出滑动分布。模拟地震矩和应变累积过程证明一些合成剂可以被解释为QuaSiodic序列的实例。我们通过分析加利福尼亚州Wrightwood的San Andreas Fault的滑动分配和历史来证明衍生的滑移统计关系的应用。

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