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3D Numerical Analysis of Loading Geometry on Soil Behavior Reinforced with Geocell Element

机译:土工格室单元在土壤中的荷载几何学三维数值分析

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Considering the weakness of the soil profile against tensile forces, researchers have been continuously searching to increase the bearing capacity and shear strength and improve its properties. In some projects, the soil reinforcement method has been known as a proper method for soil improvement because of its low cost, easy implementation, and great impact on soil properties. Reinforced soil is a structure composed of two different types of materials, which minimize their weaknesses together: the soil tolerates compressive stresses, and the reinforcement elements tolerate tensile stresses. In this research, the behavior of circle foundation located on a sand bed reinforced with geocell (GC) elements (which was investigated experimentally) was assessed analytically by using the Abaqus finite element software in three-dimensional (3D) mode as well. After assuring that the results of analytical studies were appropriately correlated with the results of laboratory studies, the behavior of the soil reinforced with GC elements under other square foundations was examined by using analytical studies. The results of this study showed a 65 % increase in bearing capacity and 15 % reduction in the settlement of circle foundation if using GC elements to reinforce the soil profile. The aforementioned has been obtained from comparing the results obtained from analytical and laboratory studies, showing proper matching and alignment between them by changing the geometry of the foundation from circle to square in 3D analytic studies. There was a greater effect on the bearing capacity of square foundations when increasing the GC elements (up to 12 %) than on the bearing capacity of circle foundations. To prove the proposed innovation in this research, some of its outputs were applied for improving the soil under an old one-story building with asymmetric settlement instead of reinforced concrete piles. The settlement was stopped within six months after the completion of the soil improvement operation.
机译:考虑到土壤剖面抵抗拉力的弱点,研究人员一直在不断寻求增加承载力和剪切强度并改善其性能。在某些项目中,土壤加固法因其成本低,易于实施且对土壤特性的影响而被认为是改良土壤的合适方法。加筋土是一种由两种不同类型的材料组成的结构,可将它们的弱点最小化:土壤可承受压应力,而增强元件则可承受拉应力。在这项研究中,还使用Abaqus有限元软件在三维(3D)模式下对位于用geocell(GC)元素加固的砂床上的圆形地基的性能(进行了实验研究)进行了分析评估。在确保分析研究的结果与实验室研究的结果适当相关之后,通过分析研究检查了在其他方形基础下用GC元素加固的土壤的行为。这项研究的结果表明,如果使用GC元素来增强土壤剖面,则承载力将增加65%,圆形基础的沉降将减少15%。通过比较分析和实验室研究获得的结果,可以得出上述结果,通过在3D分析研究中将基础的几何形状从圆形更改为正方形,可以显示出它们之间的正确匹配和对齐。当增加GC元素(最多12%)时,对方形基础的承载力的影响大于对圆形基础的承载力的影响。为了证明这项研究中提出的创新,将其一些输出用于在不对称沉降而不是钢筋混凝土桩的老旧单层建筑下对土壤进行改良。在土壤改良操作完成后的六个月内,停止沉降。

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