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Evaluation of geotextiles as separators in roadways.

机译:评估土工布在道路中的分隔物。

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摘要

This study was performed to experimentally assess for separation geotextiles (1) their survivability, (2) their ability to retard fines migration, (3) their influence on subgrade pore pressure dissipation, and (4) their performance overlying stiff subgrades. This experimental study consisted of a full scale road test and laboratory model tests. A new design method was also developed.;The results of the full scale road test indicated that the presence of a geotextile resulted in more uniform rut depths. The geotextiles did not, however, appear to reduce rut depths in test sections where the subgrades had a modest shear strength. Observations indicated that subgrade drainage during construction was enhanced by the thicker needlepunched nonwoven geotextiles.;Based on the results from the laboratory model tests, Task Force 25 survivability recommendations can be applied to most geotextiles, but it is conservative for the two lightweight geotextiles tested. The presence of a geotextile increases the bearing capacity of the subgrade, if the geotextile can survive the construction process. Rut depth was significantly affected by the presence of a geotextile, but not geotextile type and weight. In terms of their filtration function, geotextiles performed as well as a granular filter. However, the use of a granular filter could result in large stress increases on the subgrade surface and deeper ruts. Under dynamic loading, peak pore pressures within the subgrades were not significantly influenced by geotextile type and weight. A test with an impervious separator had the highest long-persisting pore pressure. All separators performed well in retarding fines migration, if they survived the dynamic loading. Clogging in geotextiles was observed but it did not cause any significant increase in pore pressure.;The results also showed that geotextiles may not be needed for good subgrades (CBR ;Based on the results from the laboratory model tests and Task Force 25 recommendations, a new design method for pavements with geotextiles as separators is proposed. Two examples are selected to illustrate the use of the new design method.
机译:进行这项研究的目的是通过实验评估分离的土工织物:(1)它们的生存能力;(2)它们阻止细粒迁移的能力;(3)它们对路基孔隙压力耗散的影响;(4)它们覆盖刚性路基的性能。这项实验研究包括全面的道路测试和实验室模型测试。还开发了一种新的设计方法。;全面道路测试的结果表明,土工布的存在导致车辙深度更均匀。但是,在路基具有适度的抗剪强度的测试区域中,土工布似乎并未降低车辙深度。观察表明,较厚的针刺非织造土工布可增强施工过程中的路基排水性能;基于实验室模型测试的结果,Task Force 25的生存力建议可适用于大多数土工布,但对于两种轻质土工布而言,这是保守的。如果土工布能够在施工过程中幸存下来,土工布的存在会增加路基的承载力。车辙深度受土工布的存在影响很大,但不受土工布类型和重量的影响。就其过滤功能而言,土工布的性能与颗粒过滤器相同。但是,使用粒状过滤器可能会导致路基表面的应力增加较大,车辙更深。在动态载荷下,路基内的峰值孔隙压力不受土工布类型和重量的显着影响。使用不透水的隔板进行的测试具有最高的持久孔隙压力。如果所有分离器都能承受动态载荷,它们在阻止细粉迁移方面表现良好。观察到土工布发生堵塞,但并没有导致孔隙压力显着增加。;结果还表明,良好的路基可能不需要土工布(CBR;基于实验室模型测试和Task Force 25建议的结果,提出了一种以土工布为分隔物的人行道设计新方法,并通过两个实例说明了该设计方法的应用。

著录项

  • 作者

    Tsai, Wen-Sen.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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