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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >Lateral force and centroid location caused by horizontal and vertical surcharge strip loads on a cross-anisotropic backfill
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Lateral force and centroid location caused by horizontal and vertical surcharge strip loads on a cross-anisotropic backfill

机译:横向和垂直附加带状荷载在各向异性各向异性回填上引起的横向力和质心位置

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This work presents analytical solutions for determining lateral force (force per unit length) and centroid location caused by horizontal and vertical surcharge surface loads acting on a cross-anisotropic backfill. The surcharge loading types are point load, line load, uniform strip load, upward linear-varying strip load, upward nonlinear-varying strip load, downward linear-varying strip load, and downward nonlinear-varying strip load. The planes of cross-anisotropy are assumed parallel to the backfill ground surface. The proposed solutions, derived by integrating the lateral stress solutions (Int. J. Numer. Anal. Meth. Geomech. 2005; 29:1341-1361), do not exist in literature. Clearly, the type and degree of material anisotropy, loading distance from the retaining wall, and loading types markedly impact the proposed solutions. Two examples are utilized to illustrate the type and degree of soil anisotropy, and the loading types on the lateral force and centroid location in the isotropic/cross-anisotropic backfills generated by the horizontal and vertical uniform, upward linear-varying and upward nonlinear-varying strip loads. The parametric study results demonstrate that the lateral force and centroid location accounting for soil anisotropy, loading distance from the retaining wall, dimension of the loading strip, and loading directions and types differ significantly from those estimated using existing isotropic solutions. The derived solutions can be added to other lateral pressures, such as earth pressure or water pressure, required for stability and structural analysis of a retaining wall. Additionally, they can simulate realistically actual surcharge loading problems in geotechnical engineering when backfill materials are cross-anisotropic.
机译:这项工作提出了用于确定横向力(单位长度力)和质心位置的分析解决方案,这些力是由作用在交叉各向异性回填上的水平和垂直附加表面载荷引起的。附加载荷类型为点载荷,线载荷,均匀带钢载荷,向上线性变化的带钢载荷,向上非线性变化的带钢载荷,向下线性变化的带钢载荷和向下非线性变化的带钢载荷。假设各向异性平面平行于回填地面。通过整合横向应力解而得出的拟议解(Int。J. Numer。Anal。Meth。Geomech。2005; 29:1341-1361)在文献中不存在。显然,材料各向异性的类型和程度,距挡土墙的加载距离以及加载类型都会显着影响所提出的解决方案。利用两个例子来说明土壤各向异性的类型和程度,以及水平和垂直均匀,向上线性变化和向上非线性变化所产生的各向同性/交叉各向异性回填中的横向力和质心位置的载荷类型剥离负荷。参数研究结果表明,考虑土壤各向异性,距挡土墙的加载距离,加载条的尺寸以及加载方向和类型的侧向力和质心位置与使用现有各向同性解决方案所估计的显着不同。可以将派生的解决方案添加到挡土墙的稳定性和结构分析所需的其他侧向压力(例如土压力或水压)中。此外,当回填材料为横各向异性时,它们可以模拟岩土工程中实际的实际附加载荷问题。

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