首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Estimating Static and Dynamic Stresses in Geosynthetic-Reinforced Pile-Supported Track-Bed under Train Moving Loads
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Estimating Static and Dynamic Stresses in Geosynthetic-Reinforced Pile-Supported Track-Bed under Train Moving Loads

机译:在火车移动载荷下估算土工合成加强桩支撑轨道床上的静态和动态应力

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摘要

This study presents an estimating method to calculate the static and the dynamic stresses in the geosynthetic-reinforced pile-supported track-bed (embankment), based on a series of full-scale model tests under train moving loads. The testing results indicate the distinct soil arching effect for both the static and the dynamic stresses, with the same height of soil arching and similar values of pile efficacy. The pile efficacy for the dynamic stress in the proposed method is thus estimated by the existing analytical model for the static stress. The distributions of the static and the dynamic stresses estimated by this method are evaluated by comparisons with the testing data in the present model test. The results show that above the height of soil arching, the static and the dynamic stresses follow the variations of the self-weight of the track-bed (including static surcharge) and the Boussinesq solution (strip load; 3 m width as that of the concrete base; applied dynamic stress at the specific train speed), respectively. In the soil arching area, the predictions by this method are consistent with the testing data above the pile cap, whereas this method provides slightly higher values above the surrounding subsoil than the experimental results. Generally, this method appears reasonable, showing the difference of the dynamic stress no more than 5 kPa between the tests and the estimations.
机译:本研究提出了一种估算方法,用于计算地质合成加强桩支撑的轨道床(路堤)中的静态和动态应力,基于火车移动负载下的一系列全规模模型试验。测试结果表明静态和动态应力的不同土壤拱形效果,具有相同的土壤拱起高度和桩效率的类似值。因此,所提出的方法中的动态应力的桩效应由现有的静应力估算。通过与本模型测试中的测试数据进行比较来评估通过该方法估计的静态和动态应力的分布。结果表明,在土拱的高度上方,静态和动态应力遵循轨道床自重的变化(包括静态附加费)和Boussinesq溶液(条带负载; 3米宽为3米混凝土基础;分别以特定的列车速度应用动态应力。在土拱形区域中,该方法的预测与桩帽上方的测试数据一致,而该方法提供比实验结果高于周围的底层的值。通常,该方法似乎合理,显示动态应力在测试和估计之间不超过5kPa的差异。

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