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A new method for remediation of sandy slopes susceptible to seepage flow using EPS-block geofoam

机译:EPS块状泡沫土修复易渗流的砂质边坡的新方法

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摘要

Using expanded polystyrene (EPS) geofoam (geofoam block) in slope remediation projects has drawn interest from the civil engineering sector for its ease of application and budget saving features. According to design precedence, all slope remediation applications that use geofoam blocks should incorporate permanent drainage systems to prevent instability of the lightweight geofoam blocks due to hydrostatic and seepage pressures. In this study, a new method for slope remediation using geofoam blocks was tested through physical laboratory experiments. For this purpose, a total of 24 lysimeter (dimensions of 60 cm height, 20 cm width, and 200 cm length) experiments (including duplicates) were conducted in which seepage through a geofoam block slope system were generated with three different constant water levels in the water reservoir of the lysimeter. Geofoam blocks (dimensions of 2.5 cm height, 5 cm width, and 15 cm length) were assembled to form embankment type configuration at the toe section of the sandy slopes. This study also included coupled numerical model simulations that were comprised of variably saturated flow modeling and slope stability modeling which could be implemented successfully for the global static failure analysis of the geofoam block slope system comprised of two mediums with different geotechnical characteristics. In addition to global static stability failure analysis, which involved conventional limit equilibrium analysis for the geofoam block slope system, hydrostatic sliding mechanism was investigated which provided insight into using an overburden concept to increase the resistance against horizontal driving forces. Experimental and numerical modeling results showed that the geofoam block slope system was stable even though the phreatic surface was above the bottom of the geofoam block assemblage. For this reason, the embankment type configuration tested in this study can be considered a viable remediation technique where seepage induced deep-seated global stability and hydrostatic sliding failures are a concern.
机译:在边坡整治项目中使用发泡聚苯乙烯(EPS)泡沫土(泡沫塑料块)因其易于使用和节省预算的特性引起了土木工程领域的兴趣。根据设计优先顺序,所有使用土工泡沫块的边坡整治应用都应采用永久排水系统,以防止轻质土工泡沫块因静水压力和渗透压力而不稳定。在这项研究中,通过物理实验室实验测试了一种使用泡沫土块进行边坡整治的新方法。为此目的,进行了总共24厘米的实验(尺寸为60 cm高度,20 cm宽度和200 cm长度)(包括重复项),其中,在3种不同的恒定水位下,通过土工泡沫块斜坡系统产生了渗流。溶渗仪的储水器。组装了泡沫土块(尺寸为2.5厘米高,5厘米宽和15厘米长),以在沙质坡面的脚趾部分形成路堤型构造。这项研究还包括耦合数值模型模拟,包括可变饱和流动模型和边坡稳定性模型,可以成功地实现对由两种具有不同岩土特性的介质构成的土工泡沫块斜坡系统的整体静态破坏分析。除了全局静态稳定性破坏分析(其中包括对泡沫土块边坡系统的常规极限平衡分析)之外,还研究了静液压滑动机制,该机制为深入了解使用超载概念增加了抵抗水平驱动力的能力提供了见识。实验和数值模拟结果表明,即使潜水面高于土工泡沫砌块组合的底部,土工泡沫砌块的边坡系统也是稳定的。因此,在这项研究中测试的堤防类型配置可以认为是一种可行的修复技术,其中渗透引起的深层整体稳定性和静水滑移破坏值得关注。

著录项

  • 来源
    《Geotextiles and Geomembranes》 |2014年第2期|166-180|共15页
  • 作者单位

    Department of Civil Engineering, Okan University, Tuzla Campus, Istanbul 34959, Turkey;

    Department of Civil Engineering, Okan University, Tuzla Campus, Istanbul 34959, Turkey;

    Department of Biosystems and Agricultural Engineering, Oklahoma State University, 120 Ag Hall Stillwater, OK 74078-6016, USA;

    Department of Civil and Environmental Engineering, University of Utah, 110 Central Campus Dr., Salt Lake City, UT 84112, USA;

    Department of Civil Engineering, The University of Memphis, 104 Engineering Science Building, Memphis, TN 38152-3180, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    EPS-block geofoam; Slope stability; Slope remediation; Hydrostatic sliding; Seepage;

    机译:EPS块状泡沫塑料;边坡稳定性;斜坡整治;静液压滑动;渗漏;
  • 入库时间 2022-08-18 00:12:55

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