首页> 外文会议>International symposium on deformation characteristics of geomaterials;IS-Seoul 2011 >Numerical analysis of strip footing resting on geosynthetic-reinforced sand bed over soft soil
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Numerical analysis of strip footing resting on geosynthetic-reinforced sand bed over soft soil

机译:土工合成材料加筋砂床上条状基础的数值分析

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In this paper, the potential benefit of a reinforced sand overlying soft soil is studied. Such reinforced sand beds are often placed on soft soil strata for an efficient and economical transfer of superstructure load. A scries of finite difference analyses are performed using two-dimensional plane strain model to investigate the behavior of geosynthetic-reinforced sand. The sandy soil, soft soil and geosynthetic reinforcements arc represented by elastic materials. It is assumed that the deformations at the interface of the reinforcements and soil arc the same. In numerical analysis, particular emphasis is paid for the effects of number of reinforcement layers, reinforcement stiffness and load intensity of footing on the ground surface settlements and mobilized tension in reinforcements. The results obtained from the present investigation have been compared with the results of finite element and finite difference analysis and also lumped parameter modeling. A reasonable close agreement is shown between the results. The results of current study indicate that reinforcing significantly improves the footing performance and also the efficiency of reinforced soil increase with increasing number of geosynthetic layers. Meaningful reduction in the ground surface settlement is observed when the number of reinforcement layer increases. The mobilized tension in the reinforcement layers increases when the stiffness of the geosynthetic layers increases. The differential settlement is also reduced due to application of multi geosynthetic layers as compared to the single layer reinforcement system.
机译:本文研究了覆盖在软土上的加筋砂的潜在效益。通常将这种加固的沙床放置在软土层上,以有效且经济地转移上层建筑荷载。使用二维平面应变模型进行了一系列的有限差分分析,以研究土工合成材料加筋砂的性能。沙土,软土和土工合成材料的增强材料是弹性材料。假定在钢筋和土的界面处的变形是相同的。在数值分析中,应特别注意增强层的数量,增强刚度和基础地面上基脚的载荷强度以及增强物中动员的张力的影响。从本研究获得的结果已与有限元和有限差分分析的结果以及集总参数建模的结果进行了比较。结果之间显示出合理的密切一致。当前的研究结果表明,随着土工合成层数量的增加,加固处理显着改善了立足性能,加固土壤的效率也随之提高。当增强层的数量增加时,观察到地表沉降的显着减少。当土工合成材料层的刚度增加时,增强层中的动员张力就会增加。与单层增强系统相比,由于应用了多个土工合成材料层,也减少了差异沉降。

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