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ADDITIONAL STRESS IN SOIL EMBANKMENTS SUBJECTED TO A NEW PRESTRESSED REINFORCEMENT DEVICE

机译:土壤堤坝的额外压力经受新预应力钢筋装置

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摘要

Theoretical solutions were derived to calculate the additional stress/prestress in a newly-developed prestressed embankment (PE), and the diffusion characteristics of the prestress in a PE with a lateral pressure plate (LPP) having width of 0.9 m were clarified using the theoretical solutions and a 3D finite element analysis. The results show that (1) the application of the theoretical solutions requires the net spacing between the LPP and the embankment shoulder is greater than the LPP width; (2) the maximum prestress appears in the upper part of the loading area of a LPP, and the maximum and minimum prestresses present an order of magnitude difference at the shallow depth, but the difference attenuates and the prestress gradually tends to be uniform with increasing depth; (3) the prestress propagates to the core zones that mainly bear the train loads with certain peak stress diffusion angles, and the values for the analyzed case are 50° and 58° in the external regions of the LPP along the slope and longitudinal directions, respectively; and (4) a continuous, effective and relatively uniform prestressing protective layer with a prestress coefficient greater than 0.1 can be formed above the core zones when the LPP spacing is properly designed.
机译:衍生理论溶液以计算新开发的预应力路堤(PE)中的附加应力/预应力,并且使用理论阐明具有宽度的横向压力板(LPP)的PE中的预应力的扩散特性被阐明解决方案和3D有限元分析。结果表明,(1)理论解决方案的应用需要LPP和堤防肩之间的净间距大于LPP宽度; (2)最大预应力出现在LPP的装载面积的上半部分,最大和最小预应力在浅深度下呈现幅度差异,但差异衰减和预应力逐渐增加趋于均匀深度; (3)预应力传播到芯区的是主要承受的列车荷载与某些峰值应力扩散角,和的值所分析的情况下是50°和58°的LPP的沿着斜面和纵向方向上的外部区域,分别; (4)当正确设计LPP间距时,可以在核心区域上方形成具有大于0.1的预应力系数的连续,有效且相对均匀的预应力保护层。

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