首页> 外文期刊>International journal of geomechanics >Steady-State Groundwater in Mechanical Stabilized Earth Walls of Various Dimensions with Geocomposite Back Drain Installation
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Steady-State Groundwater in Mechanical Stabilized Earth Walls of Various Dimensions with Geocomposite Back Drain Installation

机译:机械稳定地下水的各种尺寸墙壁稳定地下水与地球复合材料后排水装置

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摘要

Recently, considerable risks to the internal instability of mechanically stabilized earth (MSE) walls have been encountered from the inadequate drainage capacity of some backfill under extremely heavy rainfall. Due to its high drainage capacity, geocomposite is regarded as an appropriate material for drainage purposes in many geotechnical structures, including MSE walls. However, the installation of a geocomposite drain produces hydrologically complex boundary conditions, and unsaturated flow through the MSE wall becomes more complicated. This article reports a series of numerical simulations conducted to investigate the influences of MSE wall dimensions and drainage capacity on seepage responses inside the protected zone of the wall. The results indicated that the distance from the upstream water source to the drainage face (L) contributes most to the level of the phreatic surface inside the protected (reinforced) zone. Furthermore, a relationship existed between the permeability of the soil on the upstream side and the lowering of the phreatic surface due to increased geonet transmissivity. Results reported in this study might reinforce understanding of complex flow behaviors in MSE walls with back drain installation. (c) 2021 American Society of Civil Engineers.
机译:最近,在极重的降雨量下的一些回填的排水能力不足的情况下,对机械稳定的地球(MSE)墙体的内部不稳定的相当大的风险。由于其高排水能力,地理复合材料被认为是许多岩土结构中的排水目的的适当材料,包括MSE墙壁。然而,基层复合漏极的安装产生水文复杂的边界条件,并且通过MSE壁的不饱和流动变得更加复杂。本文报告了一系列数值模拟,以研究MSE墙尺寸和排水能力对墙壁保护区内的渗流响应的影响。结果表明,从上游水源到排水面(L)的距离有助于受保护(增强)区内的潜水表面的水平。此外,由于地理型透射率增加,在上游侧的土壤的渗透率和降低潜水表面的下降之间存在关系。本研究报告的结果可能会加强对背面排水装置的MSE墙壁复杂的流动性的理解。 (c)2021年美国土木工程师协会。

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