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The optimal design principles and method of crushed-rock based embankment in cold regions

机译:寒冷地区碎石路基的最佳设计原理和方法

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Crushed-rock based embankment (CRBE) is widely adopted in road construction in cold regions for its active cooling effect. The factors influencing the cooling effect of CRBE mainly include environmental temperatures, the thickness of crushed-rock layer, the thickness of upper refilled layer, the crushed-rock diameter, and the ratio of crushed-rock layer width to height. The optimal CRBE design represents an embankment structure that has the most efficient cooling effect on the roadbed and that protects the frozen soil. This paper discusses five principles in optimal CRBE design and the restrictions to individual factors related to each principle. According to these restrictions and the relationships among the factors, we propose an optimal design method using the air-convection Rayleigh number, Ra, in crushed rocks. Taking CRBE of Qinghai-Tibet railway in Beiluhe area as an example, we calculate the optimal embankment structure using the design method. The results show that the optimal structure is similar to the construction embankment structure designed in light of experiments, which indicates the feasibility of the optimal design method.
机译:碎石基路堤(CRBE)由于其有效的冷却效果而广泛用于寒冷地区的公路建设中。影响CRBE冷却效果的因素主要包括环境温度,碎石层的厚度,上部填充层的厚度,碎石直径以及碎石层的宽度与高度之比。最佳的CRBE设计代表了一种路堤结构,该路堤结构对路基具有最有效的冷却效果,并能保护冻土。本文讨论了最佳CRBE设计中的五个原则,以及与每个原则相关的各个因素的限制。根据这些限制和因素之间的关系,我们提出了利用空气对流瑞利数Ra对碎石进行优化设计的方法。以北麓河地区青藏铁路CRBE为例,采用设计方法计算了最优路堤结构。结果表明,该优化结构与根据实验设计的施工路堤结构相似,说明了该优化设计方法的可行性。

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