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首页> 外文期刊>KSCE journal of civil engineering >Dynamic Response and Long-Term Settlement of a Compacted Loess Embankment under Moving Train Loading
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Dynamic Response and Long-Term Settlement of a Compacted Loess Embankment under Moving Train Loading

机译:移动火车装载下压实黄土路堤的动态响应和长期结算

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There have been many railway construction projects in the loess region of China. Embankment is typically required for rail projects in these regions, since the railway basement is restricted by longitudinal slope requirements. However, there has been little study of the dynamic response of compacted loess embankment under moving train loading. The 2.5D finite element method was adopted to investigate this process and characterize the effects of train speed, height of embankment, and axle weight on the dynamic behavior of subgrade. A rectangular core zone of subgrade was determined, and a prediction model was established to evaluate the long-term settlement of embankment generated by moving train loading. The results showed that embankment height had negligible influence on the variation of dynamic stress. Decays of stress amplitude in both the vertical and horizontal directions slowed with increased train speed. Additionally, the dynamic stress increased linearly with the increase in axle weight due to the linear stress-strain relationship of soil. In the practical speed range (= 100 m/s), the dynamic influence depth increased with increasing speed in a range of 3-6 m. A core zone depth of 6 m reflects the effects of moving train loading, with a width of 4 m. For practical conditions (v = 100 m/s), only slight settlement of embankment was observed (= 6 mm). However, it is difficult to achieve the same physical parameters used in the experiments (moisture content and compaction degree) in engineering practice. Further work should explore long-term dynamic settlement with relation to the degree of compaction of the embankment.
机译:中国黄土地区有许多铁路建设项目。由于铁路地下室受到纵向斜坡要求的限制,通常需要堤防的堤防。然而,在移动火车装载下,对压实黄土路堤的动态响应几乎没有研究。采用2.5D有限元方法来研究该过程,并表征火车速度,堤防高度和轴重对路基动态行为的影响。确定了一种矩形的路基核心区,并建立了一种预测模型,以评估通过移动火车装载产生的路堤的长期沉降。结果表明,对动态应力变异的影响距离可忽略不计。垂直和水平方向上的应力幅度衰减随着列车速度的增加而减慢。另外,由于土壤的线性应力 - 应变关系,动态应力随着轴重的增加而增加。在实际速度范围(& = 100米/ s)中,动态影响深度随着3-6米的范围内的增加而增加。核心区深度为6米反映了移动火车装载的影响,宽度为4米。对于实际条件(V& = 100 m / s),观察到堤防的轻微沉降(& = 6 mm)。然而,难以实现在工程实践中实验(水分含量和压实程度)中使用的相同物理参数。进一步的工作应探讨长期动态结算,与堤防的压实程度有关。

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