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首页> 外文期刊>International journal of geomechanics >Active Earth Pressure of Narrow Cohesionless Backfill on Inclined Rigid Retaining Walls Rotating about the Bottom
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Active Earth Pressure of Narrow Cohesionless Backfill on Inclined Rigid Retaining Walls Rotating about the Bottom

机译:窄粘性回填的主动接地压力围绕底部旋转刚性挡土墙

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摘要

In engineering constructions, the backfill behind retaining walls is usually narrow, and its boundary conditions are asymmetric due to the space limitation. When the retaining wall rotates about the bottom, the direction of the principal stress also rotates due to the granular properties of soil and the multiple interfaces friction. Such phenomenon is more significant in narrow backfill, however, there are few studies about this. The finite element method analysis is able to demonstrate how the failure mode of narrow backfill and the rotation of principal stress are affected by the backfill geometry and interfaces friction. Theoretical analysis is employed here to calculate the principal stress rotation angle and lateral pressure coefficient of the interface element. Similarly, active earth pressure of narrow cohesionless backfill against inclined rigid walls rotating about the bottom, considering principal stress rotation and uniform load on the ground, is derived by differential element limit equilibrium, which, upon comparison with methods used in previous studies, is suitable for the asymmetric inclined boundaries and improves the scope and accuracy of calculation. Parametric studies herein show that increasing the new structure inclination and decreasing its friction will reduce the interference in the existing structure.
机译:在工程结构中,挡土墙后面的回填通常是窄的,并且由于空间限制,其边界条件是不对称的。当保持壁围绕底部旋转时,主应力的方向也由于土壤的颗粒性能和多个接口摩擦而旋转。这种现象在狭窄的回填中更为显着,但是,关于这几乎没有研究。有限元方法分析能够展示狭窄回填的故障模式和主应力的旋转是受回填几何形状和界面摩擦的影响。这里采用理论分析来计算界面元件的主应力旋转角度和横向压力系数。类似地,考虑到地面主应力旋转和均匀的载荷,通过差分元件极限平衡来源的围绕底部旋转围绕底部的倾斜刚性壁的有源接地压力,这与先前研究中使用的方法相比,这是合适的对于不对称的倾斜边界并提高计算的范围和准确性。本文的参数研究表明,增加新的结构倾斜度和降低其摩擦将降低现有结构的干扰。

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