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首页> 外文期刊>Journal of Earthquake Engineering >Ground-Motion Prediction Model From Intermediate-Depth Intraslab Earthquakes at the Hill and Lake-Bed Zones of Mexico City
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Ground-Motion Prediction Model From Intermediate-Depth Intraslab Earthquakes at the Hill and Lake-Bed Zones of Mexico City

机译:墨西哥城山丘和湖床带中深度板内地震的地面运动预测模型

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摘要

We present ground-motion prediction equations, based on Bayesian regressions, to predict response spectra at sites located within the hill and lake-bed zones of Mexico City for intermediate-depth, normal-faulting intraslab earthquakes with magnitude ranges 5.2 Mw 7.4; distances from sites to the fault surface 103 R 464 km; and focal depths of the events 40 H 128 km, all at sites located in hill and lake-bed zones in Mexico City. The equations are built as functions of magnitude and distance to the fault surface, using more than 20 intraslab earthquakes. We compare our results with previous attenuation models for intraslab (hill zone) and interplate earthquakes (hill and lake-bed zones) in Mexico City. The results also show that the uncertainty for intraslab earthquakes at sites located within the hill zone is larger than that for sites located in lake-bed zone.
机译:我们提出基于贝叶斯回归的地震动预测方程式,以预测位于墨西哥城山丘和湖床带内站点的响应谱,其范围为5.2 Mw 7.4级的中深度,正断层板内地震。从现场到断层表面的距离103 R 464 km;事件的焦点深度为40 H 128 km,均位于墨西哥城山丘和湖床区。使用20多次平板内地震,将这些方程建立为震级和距断层表面距离的函数。我们将我们的结果与之前墨西哥城板内(山坡带)和板间地震(山坡和湖床带)的衰减模型进行了比较。结果还表明,位于山丘带内的板坯内部地震的不确定性大于位于湖床带内的板坯内部地震的不确定性。

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