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Dynamic responses of high-speed railway transition zone with various subgrade fillings

机译:高速铁路过渡带不同路基填料的动力响应

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摘要

In order to explore more economic filling alternatives than typically used graded gravel + 5% cement in a high-speed railway transition zone, engineering properties of graded gravel (without cement) and A, B group filling (well graded coarse-grained soil with less than 30% of fine-grained soil) were tested. This is followed by the establishment of a 3D vertical coupling dynamic model of a tunnel-culvert-tunnel transition section based on the D'Alembert's principle of energy weak variation and the Lagrange scheme. The model results have been validated against the in situ measurements. The analysis from the model show that both graded gravel and A, B group filling are well-graded with high strengths, and the dynamic responses of the roadbed supported by the two fillings are both less than allowable values at the speed of 350 km/h. However, the curves of vertical displacement along the longitudinal transition section are great like a shape of "W" with the A, B group filling in the transition zone. Therefore, the graded gravel is recommended to be more suitable than the A, B group filling for the studied tunnel-culvert-tunnel transition zone. This recommendation may be applicable to the case with a rock subgrade underneath to support the transition zone. Comparatively, for a soil subgrade under the transition zone, our results indicate that graded gravel + 5% cement is still the best filling material, while the other two less stiffer filling materials would result in considerable fluctuations to the roadbed surface.
机译:为了在高速铁路过渡带中探索比通常使用的分级砾石+ 5%水泥更经济的填充方法,分级砾石(不含水泥)和A,B组填充的工程特性(分级良好的粗粒土,较少超过30%的细颗粒土壤)。接下来,基于能量弱变的D'Alembert原理和Lagrange方案,建立了隧道-涵洞过渡段的3D垂直耦合动力学模型。模型结果已针对现场测量进行了验证。模型分析表明,梯度砾石和A,B组填土均具有较高的强度,并且在350 km / h的速度下,两种填土所支撑路基的动力响应均小于允许值。 。但是,沿纵向过渡段的垂直位移曲线很大,就像“ W”形,A,B组填充在过渡区内。因此,对于所研究的隧道-涵洞-隧道过渡带,建议分级砾石比A,B组填充更为合适。该建议可能适用于下面有岩石路基以支撑过渡区的情况。相比之下,对于过渡带下的路基,我们的结果表明,分级砾石+ 5%水泥仍然是最好的填充材料,而其他两种硬度较差的填充材料将导致路基表面出现较大波动。

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