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Rigorous landslide hazard zonation using Newmark's method and stochastic ground motion simulation

机译:基于Newmark方法和随机地震动模拟的严密滑坡灾害分区

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摘要

Researchers and practitioners in earthquake engineering have recognized geographic information systems (GIS) to be a significant tool in modeling spatial phenomenon related to hazard and risk. GIS, as an engineering tool, has been primarily used for its spatial data storing and presentation features. Models are often simplified to be more compatible with the light computational capabilities of many GlS. lf not simplified, heavy computations are generally performed external to the GIS. A prototype vector--based GIS was developed that employs a rigorous approach to Newmark's displacement method for assessing earthquake triggered landslide hazards. The rigorous Newmark's analysis provides desirable flexibility by allowing input of actual ground motions. The prototype hazard GIS incorporates a popular shot filtered noise technique for generating artificial ground motions. The rigorous approach was compared to a popular simplified approach for computing Newmark displacements. Distribution of regional displacements was found to be similar with the simplified approach giving more and larger extreme displacements. The rigorous approach is suitable fOr large scales to model various seismic scenarios and their effect on seismically induced landslide potential.
机译:地震工程学的研究人员和从业人员已经认识到地理信息系统(GIS)是用于建模与灾害和风险相关的空间现象的重要工具。 GIS作为一种工程工具,主要用于其空间数据存储和表示功能。通常将模型简化为与许多Gls的光照计算功能更兼容。如果不简化,通常在GIS外部进行大量计算。开发了基于原型矢量的GIS,该模型采用严格的纽马克位移方法来评估地震触发的滑坡灾害。严格的Newmark分析通过允许输入实际的地面运动提供了理想的灵活性。危险GIS原型集成了一种流行的镜头过滤噪声技术,用于生成人工地面运动。将严格的方法与流行的用于计算Newmark位移的简化方法进行了比较。发现区域位移的分布与简化方法相似,给出了越来越大的极端位移。严格的方法适合于大规模建模各种地震场景及其对地震诱发滑坡势的影响。

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