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首页> 外文期刊>Geosciences >Earthquake Environmental Effects of the 1992 M S 7.3 Suusamyr Earthquake, Kyrgyzstan, and Their Implications for Paleo-Earthquake Studies
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Earthquake Environmental Effects of the 1992 M S 7.3 Suusamyr Earthquake, Kyrgyzstan, and Their Implications for Paleo-Earthquake Studies

机译:吉尔吉斯斯坦1992年Susamyr 7.3级地震的地震环境影响及其对古地震研究的启示

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Large pre-historical earthquakes leave traces in the geological and geomorphological record, such as primary and secondary surface ruptures and mass movements, which are the only means to estimate their magnitudes. These environmental earthquake effects (EEEs) can be calibrated using recent seismic events and the Environmental Seismic Intensity Scale (ESI2007). We apply the ESI2007 scale to the 1992 M S 7.3 Suusamyr Earthquake in the Kyrgyz Tien Shan, because similar studies are sparse in that area and geological setting, and because this earthquake was very peculiar in its primary surface rupture pattern. We analyze literature data on primary and secondary earthquake effects and add our own observations from fieldwork. We show that the ESI2007 distribution differs somewhat from traditional intensity assessments (MSK (Medvedev-Sponheuer-Karnik) and MM (Modified Mercalli)), because of the sparse population in the epicentral area and the spatial distribution of primary and secondary EEEs. However, the ESI2007 scale captures a similar overall pattern of the intensity distribution. We then explore how uncertainties in the identification of primary surface ruptures influence the results of the ESI2007 assignment. Our results highlight the applicability of the ESI2007 scale, even in earthquakes with complex and unusual primary surface rupture patterns.
机译:大的史前地震在地质和地貌记录中留下痕迹,例如一次和二次表面破裂和质量运动,这是估计其震级的唯一手段。可以使用最近的地震事件和环境地震烈度等级(ESI2007)来校准这些环境地震效应(EEE)。我们将ESI2007规模应用到吉尔吉斯斯坦天山1992年M S 7.3 Suusamyr地震中,因为该地区和地质环境的研究很少,而且该地震的主要地表破裂模式非常特殊。我们分析了有关一级和二级地震影响的文献数据,并从野外工作中添加了我们自己的观察结果。我们表明,ESI2007的分布与传统强度评估(MSK(梅德韦杰夫-Sponheuer-Karnik)和MM(改良梅尔卡利))有所不同,这是因为震中地区人口稀少以及初级和次级EEE的空间分布。但是,ESI2007标尺捕获了相似的强度分布总体模式。然后,我们探讨在识别主要表面破裂中的不确定性如何影响ESI2007作业的结果。我们的结果强调了ESI2007量表的适用性,即使在具有复杂且异常的主要地表破裂模式的地震中也是如此。

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