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Linear regression analysis for factors influencing displacement of high-filled embankment slopes

机译:高填方路堤边坡位移影响因素的线性回归分析

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It is a common failure type that high-filled embankment slope sideslips. The deformation mechanism and factors influencing the sideslip of embankment slope is the key to reduce the probability of this kind of engineering disaster. Taking Liujiawan high-filled embankment slope as an example, the deformation and failure characteristics of embankment slope and sheet-pile wall are studied, and the factors influencing instability are analyzed, then the correlation of deformation rate of the anti-slide plies and each factor is calculated with multivariate linear regression analysis. The result shows that: (1) The length of anchoring segment is not long enough, and displacement direction of embankment and retaining structure are perpendicular to the trend of the highway; (2) The length of the cantilever segment is so large that the active earth pressures behind the piles are very large. Additionally, the surface drainage is not smooth, which leads to form a potential sliding zone between bottom of the backfill and the primary surface; (3) The thickness of the backfill and the length of the anti-slide pile cantilever segment have positive correlation with the deformation whereas the thickness of anti-slide pile through mudstone has a negative correlation with the deformation. On the other hand the surface water is a little disadvantage on the embankment stability.
机译:高填方路堤边坡是一种常见的破坏类型。影响路堤边坡滑移的变形机理和影响因素是降低此类工程灾害发生概率的关键。以刘家湾高填方路堤边坡为例,研究了路堤边坡和板桩墙的变形破坏特征,分析了影响失稳的因素,然后研究了抗滑层变形率与各因素的相关性。用多元线性回归分析计算。结果表明:(1)锚固段长度不够长,路堤及支护结构的位移方向与公路的走向垂直。 (2)悬臂段的长度太大,使得桩后的活动土压力很大。另外,地表排水不平滑,这导致在回填物底部和主表面之间形成潜在的滑动区域。 (3)回填厚度和抗滑桩悬臂段长度与变形呈正相关,而穿过泥岩的抗滑桩厚度与变形呈负相关。另一方面,地表水对路堤的稳定性不利。

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