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Discrete characteristics of the aftershock sequence of the 2011 Van earthquake

机译:2011年范克地震余震序列的离散特征

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An intraplate earthquake of magnitude Mw 7.2 occurred on a NE-SW trending blind oblique thrust fault in accretionary orogen, the Van region of Eastern Anatolia on October 23,2011. The aftershock seismicity in the Van earthquake was not continuous but, rather, highly discrete. This shed light on the chaotic non-uniformity of the event distribution and played key roles in determining the seismic coupling between the rupturing process and seismogeneity. I analyzed the discrete statistical mechanics of the 2011 Van mainshock-aftershock sequence with an estimation of the non-dimensional tuning parameters consisting of; temporal clusters (C) and the random (RN) distribution of aftershocks, range of size scales (ROSS), strength change (ε_D), temperature (T), P-value of temporal decay, material parameter R-value, seismic coupling χ, and Q-value of aftershock distribution. I also investigated the frequency-size (FS), temporal (T) statistics and the sequential characteristics of aftershock dynamics using discrete approach and examined the discrete evolutionary periods of the Van earthquake Gutenberg-Richter (GR) distribution. My study revealed that the FS and T statistical properties of aftershock sequence represent the Gutenberg-Richter (GR) distribution, clustered (C) in time and random (RN) Poisson distribution, respectively. The overall statistical behavior of the aftershock sequence shows that the Van earthquake originated in a discrete structural framework with high seismic coupling under highly variable faulting conditions. My analyses relate this larger dip-slip event to a discrete seismogenesis with two main components of complex fracturing and branching framework of the ruptured fault and dynamic strengthening and hardening behavior of the earthquake. The results indicate two dynamic cases. The first is associated with aperiodic nature of aftershock distribution, indicating a time-independent Poissonian event. The second is associated with variable slip model, varying loading rates and high seismic coupling along the ruptured area. This study concludes that the aperiodic statistical behavior of the Van aftershock sequence is one of the results of the time-independent Poissonian seismic deformation in the 2011 Van earthquake.
机译:2011年10月23日,在安那托利亚东部范特地区增生造山带NE-SW趋势盲斜推逆断层上发生了Mw 7.2级板内地震。范地震中的余震地震活动不是连续的,而是高度离散的。这揭示了事件分布的混沌非均匀性,并在确定破裂过程和地震成因之间的地震耦合中起着关键作用。我分析了2011 Van主震-余震序列的离散统计力学,并估计了以下各维调整参数:余震的时间簇(C)和随机(RN)分布,尺度范围(ROSS),强度变化(ε_D),温度(T),时间衰减的P值,材料参数R值,地震耦合χ和余震分布的Q值。我还使用离散方法研究了频率大小(FS),时间(T)统计数据和余震动力学的连续特征,并研究了范古登堡-里希特(GR)地震分布的离散演化周期。我的研究表明,余震序列的FS和T统计特性分别表示古腾堡-里希特(GR)分布,时间上的聚类(C)和随机(RN)泊松分布。余震序列的整体统计行为表明,范高地震起源于在高度变化的断层条件下具有高地震耦合的离散结构框架。我的分析将这一较大的倾滑事件与离散的地震发生联系起来,地震的发生主要由断裂断裂的复杂断裂和分支构架以及地震的动态强化和硬化行为的两个主要部分组成。结果表明了两种动态情况。第一个与余震分布的非周期性相关,指示时间独立的泊松事件。第二个因素与可变滑移模型,变化的荷载率和沿破裂区域的高地震耦合有关。本研究得出的结论是,范余震序列的非周期性统计行为是2011年范地震中与时间无关的泊松地震变形的结果之一。

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