数字高程模型
地形
插值(计算机图形学)
地质学
仰角(弹道)
代理(统计)
计算机科学
算法
地图学
遥感
几何学
地理
数学
人工智能
运动(物理)
机器学习
作者
David C. Heath,David J. Wald,C. Bruce Worden,Eric M. Thompson,Gregory M. Smoczyk
标识
DOI:10.1177/8755293020911137
摘要
Time-averaged shear wave velocity over the upper 30 m of the earth’s surface ( V S30 ) is a key parameter for estimating ground motion amplification as both a predictive and a diagnostic tool for earthquake hazards. The first-order approximation of V S30 is commonly obtained through a topographic slope–based or terrain proxy due to the widely available nature of digital elevation models. However, better-constrained V S30 maps have been developed in many regions. Such maps preferentially employ various combinations of V S30 measurements, higher-resolution elevation models, lithologic, geologic, geomorphic, and other proxies and often utilize refined interpolation schemes. We develop a new hybrid global V S30 map database that defaults to the global slope-based V S30 map, but smoothly inserts regional V S30 maps where available. In addition, we present comparisons of the default slope-based proxy maps against the new hybrid version in terms of V S30 and amplification ratio maps, and uncertainties in assigned V S30 values.
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