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Effect of horizontal drain size on the stability of an embankment dam in steady and transient seepage conditions

机译:稳态和瞬态渗流条件下水平排水口尺寸对堤坝稳定性的影响

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摘要

Application of a horizontal drain in an embankment dam has been a prevalent method to lower the phreatic line and dissipate the excessive pore water pressure. The efficiency of this type of drain is often attributed to its length, while the effect of thickness is ignored. In this research, a series of tests were accomplished and different drain sizes including different thicknesses and lengths were applied to a physical model of an embankment dam. During the tests, the pore pressures were measured both in the steady and transient conditions using a number of peizometers and pressure sensors. In steady state, the increased thickness prevented the occurrence of piping and in transient state guaranteed the stability of the upstream slope. However, the thickest drain used in this research showed different efficiencies depending upon the applied length. For the maximum effective length derived from the equations, the increase in thickness could efficiently prevent the undesirable consequences of excessive pore water pressure.
机译:在堤坝中使用水平排水装置是降低潜水线并消除过大孔隙水压力的普遍方法。这种类型的排水效率通常归因于其长度,而厚度的影响却被忽略了。在这项研究中,完成了一系列测试,并将不同的排水尺寸(包括不同的厚度和长度)应用于堤坝的物理模型。在测试过程中,使用多个比压计和压力传感器在稳态和瞬态条件下都测量了孔隙压力。在稳定状态下,增加的厚度防止了管道的出现,而在过渡状态下,保证了上游斜坡的稳定性。但是,此研究中使用的最厚的排水管显示出不同的效率,具体取决于应用的长度。对于从方程式得出的最大有效长度,厚度的增加可以有效地防止孔隙水压力过大的不良后果。

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