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Numerical simulation of efficient cooling by coupled RR and TCPT on railway embankments in permafrost regions

机译:多年冻土区铁路堤上耦合RR和TCPT高效冷却的数值模拟

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摘要

Coupled strengthening measures of ripped-rock (RR) revetment and two-phase closed thermosyphons (TCPTs), referred to as CRRTs, have proved to be effective in solving the thaw-induced problems in engineering constructions in permafrost regions. However, one of the key issues is related to the effectiveness of the current CRRT systems in the long term. In this paper, a coupled strengthening model with a CRRT is established to rebuild and forecast the geo-temperature distribution before and after the reinforcement. The geothermal conditions are recorded for three cases: a heat insulating embankment reinforced with RRs and vertically implemented TPCTs, a heat insulating embankment and general embankment reinforced with CRRT in which the TCPTs are vertically implemented, and a heat insulating embankment and general embankment reinforced with CRRT in which the TPCTs on the sunny shoulder are inclined at an angle based on the practical configuration of the embankment. Some corresponding conclusions and suggestions are proposed for a better design of CRRTs for the construction and possible reinforcement of railway embankments in permafrost regions.
机译:已证明,剥落岩石(RR)护套(RR)护套和两相封闭热循环(TCPT)的加强措施证明是有效解决永久冻土地区工程结构中的解冻诱导的问题。然而,其中一个关键问题与长期的当前CRRT系统的有效性有关。本文建立了一种CRRT的耦合强化模型,以重建并预测加强件前后的地质温度分布。地热条件记录了三种情况:用RRS加固的绝热路堤和垂直实施的TPCTS,用CRRT加强的热绝缘路堤和一般堤坝,其中TCPT在垂直实施的CRRT,以及用CRRT加固的绝热堤和一般堤防其中阳光肩上的TPCT基于堤防的实际配置以一定角度倾斜。提出了一些相应的结论和建议,以更好地设计了在多余地区的施工和可能加固铁路堤坝的施工和策略。

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