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EPS Resistance Factors and Applications on Flexible Walls

机译:柔性墙的EPS阻力因素及其应用

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Cantilever retaining walls with lengthy free heights are usually required in several geotechnical applications. Compacted soil is the typical backfill behind such walls, yet soil has high unit weight that imposes large lateral loads and may lead to wall outsized dimensions. Expanded polystyrene (EPS) or Geofoam can substitute the soil backfill due to its lightweight and high compressibility, and can reduce the lateral static loads imposed on walls. In this paper, the EPS main parameters were measured after conducting a series of laboratory tests to determine the mechanical and interface properties. Also, a reliability analysis was conducted to calibrate the partial resistance factors for the EPS mechanical properties. Then, a flexible cantilever retaining wall with EPS inclusion was modeled using finite element. From the main outcomes, the lateral pressure was significantly reduced after using the EPS inclusion by up to 75%.
机译:在多种岩土工程应用中,通常需要具有较长自由高度的悬臂式挡土墙。压实的土壤是此类墙后的典型回填物,但土壤具有较高的单位重量,这会施加较大的侧向载荷,并可能导致墙的尺寸过大。膨胀聚苯乙烯(EPS)或Geofoam的重量轻且可压缩性强,可以代替土壤回填,并且可以减少施加在墙壁上的横向静载荷。在本文中,EPS的主要参数是在进行一系列实验室测试以确定机械性能和界面性能后进行测量的。此外,进行了可靠性分析,以校准EPS机械性能的部分阻力系数。然后,使用有限元对带有EPS夹杂物的柔性悬臂挡土墙进行了建模。从主要结果来看,使用EPS夹杂物后,侧压显着降低了75%。

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