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Retaining wall type selection within a V-shaped deep valley

机译:V形深谷内的挡土墙类型选择

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Two-dimensional (2D) numerical calculation is usually conducted to determine the type of the retaining wall for an embankment. However, such calculation method is not suitable for the retaining wall within a V-shaped deep valley: The retaining wall receives pressures both from the embankment above and the sides of the valley, thus conventional 2D method is inadequate to reflect its stress-deformation relationship. Three-dimensional (3D) numerical calculation is proposed here to select a proper gravity retaining wall within a V-shaped deep valley. A 3D finite element gravity retaining wall model simulating a real project in China was established and two types of the retaining wall: linear and curved in axial line, are compared. The results show that, compared with the linear wall, the curved wall adjusts better to the modes of pressures imposed on it due to the complicated topography, and within the maximum tensile stress the curved wall can be designed to be thick in the middle and thinner on both sides.
机译:通常进行二维(2D)数值计算以确定路堤挡土墙的类型。但是,这种计算方法不适用于V形深谷内的挡土墙:挡土墙既承受谷底上方路堤的压力,又承受谷底两侧的压力,因此传统的二维方法不足以反映其应力-变形关系。 。本文提出了三维(3D)数值计算,以在V形深谷内选择合适的重力挡土墙。建立了模拟中国实际工程的3D有限元重力挡土墙模型,并比较了挡土墙的两种类型:线性的和轴向的。结果表明,与线性墙相比,由于其复杂的地形,弯曲墙可以更好地适应施加在其上的压力模式,并且在最大拉伸应力范围内,弯曲墙可以设计为中厚且较薄在两边。

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