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Performance of heterogeneous earthfill dams under earthquakes: optimal location of the impervious core

机译:地震作用下异质土坝的性能:防渗芯的最佳位置

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摘要

Earthfill dams are man-made geostructures which may be especially damaged by seismic loadings, because the soil skeleton they are made of suffers remarkable modifications in its mechanical properties, as well as changes of pore water pressure and flow of this water inside their pores, when subjected to vibrations. The most extreme situation is the dam failure due to soil liquefaction. Coupled finite element numerical codes are a useful tool to assess the safety of these dams. In this paper the application of a fully coupled numerical model, previously developed and validated by the authors, to a set of theoretical cross sections of earthfill dams with impervious core, is presented. All these dams are same height and have the same volume of impervious material at the core. The influence of the core location inside the dam on its response against seismic loading is numerically explored. The dams are designed as strictly stable under static loads. As a result of this research, a design recommendation on the location of the impervious core is obtained for this type of earth dams, on the basis of the criteria of minor liquefaction risk, minor soil degradation during the earthquake and minor crest settlement.
机译:土坝是人为的地质结构,可能会因地震荷载而特别受损,因为它们制成的土壤骨架的力学性能以及孔隙水压力和孔隙中水的流量发生了显着变化。遭受振动。最极端的情况是由于土壤液化导致的大坝破坏。耦合的有限元数字代码是评估这些大坝安全性的有用工具。本文介绍了作者先前开发和验证的完全耦合数值模型在一组具有不透水芯的理论上的大坝理论截面上的应用。所有这些水坝的高度相同,核心处的防渗材料体积相同。数值研究了坝内核心位置对其对地震荷载的响应的影响。大坝设计为在静态载荷下严格稳定。这项研究的结果是,根据液化风险小,地震过程中土壤退化小和波峰沉降少的标准,获得了这类土坝防渗芯位置的设计建议。

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