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STUDY ON SITE CONDITIONS BASED ON TOPOGRAPHIC SLOPE

机译:基于地形坡度的场地条件研究

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The travel-time averaged shear-wave velocity to a depth of 30m (Vs30) below the Earth’s surface is widely used to classify sites in many building codes. Vs30 is also used to estimate site classification in recent ground-motion prediction equations (GMPEs), and the distribution of Vs30 has been mapped in a region or country. An alternative method has recently been proposed for evaluating global seismic site conditions or Vs30, from the SRTM (Shuttle Radar Topography Mission) DEMs (digital elevation models). The basic premise of the method is that the topographic slope can be used as a reliable proxy for Vs30 in the absence of geologically and geotechnically based site-condition maps through correlations between Vs30 measurements and topographic gradient. Here, we use different resolutions (3 arcsec, 30 arcsec) DEM data to get Vs30 data separately, analyze and compare the difference of Vs30 data and site conditions obtained from different resolution DEM data. Shandong Province in eastern China and Sichuan Province in Western China are studied respectively. It is found that the higher resolution data is better at defining spatial topographic features than the 30c data, but less improvement in its correlation with Vs30.
机译:在许多建筑规范中,广泛使用传播时间平均剪切波速度到达地球表面以下30m(Vs30)的深度。在最近的地面运动预测方程(GMPE)中,Vs30还用于估算站点分类,并且Vs30的分布已映射到一个地区或国家/地区。最近已经提出了另一种方法,用于从SRTM(航天飞机雷达地形任务)DEM(数字高程模型)中评估全球地震现场条件或Vs30。该方法的基本前提是,在没有基于地质和岩土的站点条件图的情况下,通过Vs30的测量值与地形坡度之间的相关性,地形坡度可以用作Vs30的可靠替代。在这里,我们使用不同分辨率(3 arcsec,30 arcsec)的DEM数据分别获得Vs30数据,分析和比较Vs30数据的差异以及从不同分辨率DEM数据获得的现场条件。分别研究了中国东部的山东省和中国西部的四川省。发现较高分辨率的数据比30c数据在定义空间地形特征方面更好,但在与Vs30的相关性方面改进较少。

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