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The Effect of Impervious Clay Core Shape on the Stability of Embankment Dams

机译:不透水粘土芯形状对堤坝稳定性的影响

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摘要

One of the most important dangers that treat earth dams which can lead to interior failure over a prolonged period is the hydraulic fracturing factor. In the case of zoned dams, due to differences in stiffness of the core and its abutment zone, differential settlements occur between them. This factor is responsible for the arching phenomenon. Differential settlements between core and shell cause cracks within the core initially sub-surface, Those cracks may develop the first impounding causing internal erosion on the dam core. In this research, using a computer modeling of Ghavoshan rockfill dam (located the west part of Iran) as a case study computed by SIGMA/W program, the role of the dam core shape on those factors is demonstrated. It is found that an inclined core shape is preferred in a condition that is especially important settlements of construction during for dam body. The result of finite element analysis indicates desired conditions from the point of view of stress, deformation and resistance against hydraulic fracturing for the same width of dam designs. Moreover, this can be higher priority for embankment dam designs.
机译:其中最重要的危险是治疗土坝这可能会导致内部故障在长时间内是水力压裂因素。在划水坝,由于在芯和其邻接区域的硬度的差异的情况下,他们之间会发生不均匀沉降。这个因素是负责起拱现象。在芯内芯和壳的原因的裂纹最初子表面之间不均匀沉降,这些裂纹会发展第一蓄水上坝芯引起内部侵蚀。在这项研究中,使用Ghavoshan的计算机模拟堆石坝(位于伊朗西部的部分)由SIGMA / W计算程序的案例研究,大坝核心形状对这些因素的作用是证明。据发现,倾斜的芯形状是优选的,是在用于坝体结构的特别重要的结算的情况。有限元分析的结果指示期望的条件从视图应力,变形和抗水力压裂大坝的设计宽度相同的点。此外,这可以为土石坝设计更高的优先级。

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