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A fast topographic characterization of seismic station locations in Iran through integrated use of digital elevation models and GIS

机译:通过集成使用数字高程模型和 GIS 对伊朗地震台站位置进行快速地形表征

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We present topographic slope positions of seismic stations within four independent networks (IGUT, IIEES, GSI, and BHRC) in Iran through integrated use of digital elevation models and GIS. Since topographic amplification factor (TAF) due to ground surface irregularity could be one of the reasons of earthquake wave amplification and unexpected damage of structures located on the top of ridges in many previous studies, the ridge stations in the study area are recognized using topographic position index (TPI) as a spatial-based scale-dependent approach that helps in classification of topographic positions. We also present the correlation between local topographic positions and V (s) (30) along with Voronoi tiles of two networks (IGUT and IIEES). The obtained results can be profitably used in seismology to establish homogeneous subnetworks based on Voronoi tiles with precise feedback and in the formulation of new ground motion prediction equations with respect to topographic position and topographic amplification factor.
机译:我们通过综合使用数字高程模型和 GIS 展示了伊朗四个独立网络(IGUT、IIEES、GSI 和 BHRC)内地震台站的地形坡度位置。由于地表不平整导致的地形放大系数(TAF)可能是地震波放大和以往许多研究中位于山脊顶部的建筑物意外损坏的原因之一,因此使用地形位置指数(TPI)将研究区域的山脊站识别为一种基于空间的尺度依赖方法,有助于地形位置的分类。我们还提出了局部地形位置与V(s)(30)之间的相关性以及两个网络(IGUT和IIEES)的Voronoi瓦片。所得结果可用于地震学,以建立基于具有精确反馈的Voronoi瓦片的均匀子网,并制定有关地形位置和地形放大因子的新地震动预测方程。

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