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Myth and Fact on Long-Term Creep of GRS Structures

机译:GRS结构长期蠕变的神话与事实

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The long-term design strength of a geosynthetic reinforcement employed in current design methods is determined either by performing laboratory tests on the geosynthetic without considering soil-geosynthetic interaction or by imposing a very large safety factor to the tensile strength of the geosynthetic without any regard to the effect of backfill. This paper reviews long-term creep behavior of soil-geosynthetic systems and proposed revisions to the current design methods. Based on the authors’ experiences and judgments, a cumulative long-term reduction factor, k, for geosynthetic reinforcement is recommended. The value of k is a function of the backfill gradation and index properties, reinforcement spacing, and geosynthetic polymer type. In addition, a rational procedure to account for soil-geosynthetic interactive creep behavior based on the SGIP test is presented.
机译:当前设计方法中采用的土工合成材料增强材料的长期设计强度,是通过在不考虑土壤-土工合成材料相互作用的情况下对土工合成材料进行实验室测试或通过对土工合成材料的抗张强度施加非常大的安全系数来确定的回填的效果。本文回顾了土壤-土工合成材料系统的长期蠕变行为,并提出了对当前设计方法的修改建议。根据作者的经验和判断,建议使用土工合成材料的累积长期降低系数k。 k的值是回填等级和索引属性,钢筋间距和土工合成聚合物类型的函数。此外,提出了一种基于SGIP测试的合理解释土-土-合成材料相互作用蠕变行为的方法。

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