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Methods for assessing the stability of slopes during earthquakes—A retrospective

机译:地震边坡稳定性评估方法回顾

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During the twentieth century, several methods to assess the stability of slopes during earthquakes were developed. Pseudostatic analysis was the earliest method; it involved simply adding a permanent body force representing the earthquake shaking to a static limit-equilibrium analysis. Stress-deformation analysis, a later development, involved much more complex modeling of slopes using a mesh in which the internal stresses and strains within elements are computed based on the applied external loads, including gravity and seismic loads. Stress-deformation analysis provided the most realistic model of slope behavior, but it is very complex and requires a high density of high-quality soil-property data as well as an accurate model of soil behavior. In 1965, Newmark developed a method that effectively bridges the gap between these two types of analysis. His sliding-block model is easy to apply and provides a useful index of co-seismic slope performance. Subsequent modifications to sliding-block analysis have made it applicable to a wider range of landslide types. Slidingblock analysis provides perhaps the greatest utility of all the types of analysis. It is far easier to apply than stress-deformation analysis, and it yields much more useful information than does pseudostatic analysis.
机译:在二十世纪,开发了几种评估地震过程中边坡稳定性的方法。伪静态分析是最早的方法。它只需要简单地将代表地震震动的永久力添加到静态极限平衡分析中。应力变形分析是一项后来的发展,它涉及到使用网格进行更复杂的边坡建模,其中网格是根据所施加的外部载荷(包括重力和地震载荷)计算出单元内部的内部应力和应变的。应力变形分析提供了最现实的边坡行为模型,但它非常复杂,需要高密度的高质量土壤特性数据以及准确的土壤行为模型。 1965年,Newmark开发了一种有效地弥合这两种分析之间的差距的方法。他的滑块模型易于应用,并为同震边坡性能提供了有用的指标。对滑动块分析的后续修改使其可应用于更广泛的滑坡类型。滑块分析可能在所有类型的分析中提供最大的实用性。它比应力变形分析要容易得多,并且比伪静态分析产生更多有用的信息。

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