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Thermo-mechanical stability analysis of cooling embankment with crushed-rock interlayer on a sloping ground in permafrost regions

机译:多年冻土区倾斜地碾压岩层间冷却路堤热机械稳定性分析

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摘要

Some embankments of highways are inevitably built on slopes in permafrost regions. It is usually difficult to ensure the stability of the embankments on sloping ground because of the asymmetric geotemperature and stress distribution. The crushed-rock layer is often layed in the slope areas to control the geotemperature. Cooling performance is focused to evaluate the thermal stability of crushed-rock embankment, but the mechanics are poorly concerned. This study developed a thermo-mechanical model to evaluate the influence of the cooling effect of crushed-rock layer on the mechanical state of embankment on sloping ground. Two embankments are taken as examples according to the engineering practice in permafrost regions on the Qinghai-Tibet Plateau, i.e., the unprotected embankment and the crushed-rock interlayer embankment. To analyze the stability of sloping embankments, the geotemperature, principal strain, deformation and safety factor in four typical seasons are simulated during operations. Numerical results indicate that the crushed-rock interlayer can effectively cool the sloping embankment and its foundation. Meanwhile, the cooling effect of the porous layer can reduce the uneven settlements to improve the safety reverse of the embankment. This study can also provide scientific basis and reference for the design of similar engineering structures in permafrost regions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:高速公路的一些堤防不可避免地在永久冻土地区的斜坡上建造。由于不对称的地理体育和应力分布,通常难以确保堤坝对倾斜地面的稳定性。碎石层通常铺设在斜坡区域以控制裸照。冷却性能集中于评估碎石路堤的热稳定性,但机械师们令人难以担忧。该研究开发了一种热机械模型,以评估碎石层冷却效果对倾斜地堤坝机械状态的影响。根据青藏高原的永久冻土地区的工程实践,即不受保护的路堤和碎石中间堤的工程实践。为了分析倾斜堤的稳定性,在操作期间模拟了四个典型季节的裸眼镜,主应变,变形和安全系数。数值结果表明,碎石中间层可以有效地冷却倾斜的堤防及其基础。同时,多孔层的冷却效果可以减少不均匀的定居点,以改善堤防的安全相反。本研究还可以为多年冻土地区的类似工程结构设计提供科学依据和参考。 (c)2017 Elsevier Ltd.保留所有权利。

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