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首页> 外文期刊>Arabian journal of geosciences >Interference of two closely spaced footings embedded in unreinforced and reinforced soil medium: a finite element approach using ABAQUS
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Interference of two closely spaced footings embedded in unreinforced and reinforced soil medium: a finite element approach using ABAQUS

机译:嵌入未粘接和加强土壤介质中的两个紧密间距的间距的干扰:ABAQUS的有限元方法

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摘要

The stress or the failure zone of footings placed at close proximity interfere altering the performance of the footings. The present study pertains finite element analysis of two closely spaced rough, rigid strip footings embedded in cohesion-less foundation soil medium using the commercially available software ABAQUS. The interfering footings are considered to be supported on homogeneous reinforced and unreinforced soil medium. The failure criterion of the soil is directed to follow Mohr-Coulomb criterion with the non-associated flow rule. The influence of interference phenomenon on the ultimate bearing capacity, settlement and load-settlement characteristics have been explored by considering and varying the various parameters such as depth of embedment, soil friction angle, depth of reinforcement (first layer and subsequent layer), number of reinforcement layers and length of reinforcement. The soil friction angle is one of the important factors to have an effect on bearing capacity, and the friction angle is varied between 20 degrees to 40 degrees. The ultimate bearing capacity of closely spaced footings over unreinforced and reinforced soils are represented by non-dimensionless efficiency factors (xi(UR) and xi(R)). The analyses results conclude that interference has a significant influence on bearing capacity and settlement of footings supported over unreinforced and reinforced soil medium. Although, soil friction angle affects the interference significantly (higher friction angle has the highest peak of efficiency factor), depth of footing embedment also has remarkable influence over the same. The peak of efficiency factor decreases with an increase in the depth of footing embedment for a specified soil friction angle; however, the same increases with increase in soil friction angle for a specified depth of footing embedment. The interference effect is found to be decreasing with increase in the embedment depth. The bearing capacity of interfering footings on reinforced soil is enhanced noticeably compared to that on unreinforced footings; however, the settlement is not predominant.
机译:靠近接近的基位的压力或失效区域会改变基位的性能。本研究采用市售软件ABAQUS对嵌入的粘合基础土壤介质中的两个紧密间隔粗糙的刚性带脚踏板的有限元分析有限。干扰基况被认为是在均匀的增强和未合成的土壤培养基上负载。土壤的故障标准被引导与无关的流量规则遵循Mohr-Coulomb标准。通过考虑和改变各种参数,诸如嵌入深度,土壤摩擦角度,钢筋深度(第一层和后续层)的各种参数,探讨了干扰现象对最终承载力,沉降和沉降特征的影响加固层和钢筋长度。土壤摩擦角是对承载能力产生影响的重要因素之一,摩擦角在20度至40度之间变化。在不合因和加强土壤上紧密间隔基况的最终承载力由非无量纲效率因素(XI(UR)和XI(R))表示。分析结果得出结论,干扰对轴承能力和沉降的轴承率和沉积的土壤介质负载的沉降影响显着影响。尽管土壤摩擦角度显着影响干扰(较高的摩擦角具有最高效率因数的峰值),但是距离嵌入的深度也相同的显着影响。效率因子的峰值随着指定的土壤摩擦角的基础嵌入深度的增加而降低;然而,随着土壤摩擦角度的增加而增加的基础嵌入深度的增加。发现干扰效果随着嵌入深度的增加而降低。与未合成的基础相比,钢筋土壤干扰基况的承载力显着增强;然而,结算不是主要的。

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