首页> 外文期刊>Journal of materials in civil engineering >Reduction of Lateral Earth Forces Acting on Rigid Nonyielding Retaining Walls by EPS Geofoam Inclusions
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Reduction of Lateral Earth Forces Acting on Rigid Nonyielding Retaining Walls by EPS Geofoam Inclusions

机译:EPS土工泡沫夹杂物减少作用在刚性非屈服挡土墙上的横向土力

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Expanded polystyrene (EPS) geofoam panels of low stiffness installed vertically against the rigid nonyielding retaining structure provide additional deformations in the backfill. This behavior will lead to the mobilization of a greater portion of the soil strength, thus decreasing the lateral earth thrust acting on the rigid retaining wall. This study addresses the effect of geofoam compressible inclusion on lateral earth thrust acting on a rigid nonyielding retaining wall by small-scale model tests and numerical analyses. The finite-element code used in the numerical modeling is validated against the stress measurements on a 0.7-m-high wall model. Significant reduction is observed in the lateral earth pressures attributable to deformations concentrated at the lower half of retained soil mass. The effects of compressible inclusion thickness, relative stiffness of the EPS geofoam, and strength parameters of the backfill on lateral earth thrust acting on rigid nonyielding walls are investigated by a series of numerical analyses performed by using the verified finite-element model. Relative thickness and stiffness of the inclusion have the major roles in the reduction of the lateral earth thrust. Increase in soil strength (i.e., internal friction angle of the cohesionless backfill) has a positive effect on the isolation efficiency that becomes more pronounced for a thicker geofoam inclusion. The presence of a less-stiff layer of geofoam within the upper midheight of the retaining wall provides improvement in load isolation performance because deformations associated with the lateral compression of the softer inclusion within this zone lead to mobilization of additional shear resistance in the retained soil mass.
机译:垂直安装在坚硬的非屈服保持结构上的低硬度膨胀聚苯乙烯(EPS)泡沫泡沫板会在回填中产生额外的变形。这种行为将导致大部分土壤强度的动员,从而减小作用在刚性挡土墙上的侧向土推力。本研究通过小规模模型试验和数值分析,探讨了泡沫塑料可压缩夹杂物对作用在刚性非屈服挡土墙上的侧向土推力的影响。数值模型中使用的有限元代码针对0.7米高的墙体模型上的应力测量进行了验证。观察到侧向土压力显着降低,这归因于变形集中在保留的土壤质量的下半部分。通过使用验证的有限元模型进行的一系列数值分析,研究了可压缩夹杂物厚度,EPS土工泡沫的相对刚度以及回填的强度参数对作用在刚性非屈服壁上的侧向土推力的影响。夹杂物的相对厚度和刚度在减小侧向土推力中起主要作用。土壤强度的增加(即无粘性回填的内摩擦角)对隔离效率有积极影响,对于更厚的土工泡沫夹杂物,隔离效率变得更加明显。挡土墙上部中部高度处存在较硬的土工泡沫层,可改善荷载隔离性能,因为与该区域内较软的夹杂物的侧向压缩相关的变形会导致剩余土体中额外的抗剪强度动员。 。

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