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首页> 外文期刊>International Journal of Heat and Mass Transfer >Performance, applicability, and optimization of a new slope cooling and protection structure for road embankment over warm permafrost
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Performance, applicability, and optimization of a new slope cooling and protection structure for road embankment over warm permafrost

机译:在温暖的永久冻土的道路路堤新坡度冷却和保护结构的性能,适用性和优化

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摘要

How to deal with the issues that crushed-rock revetment embankments are facing, such as inadequate cooling, sand-filling, and rock-weathering, is of importance for the integrity and safe service of roadways built on warm permafrost (>-1.0°C) in the Tibet Plateau. In this study, a new slope cooling and protection structure (SCPS) was developed and a field experiment was implemented in the plateau permafrost zone to examine its cooling effect on permafrost stratum. Numerical simulations were then conducted to evaluate its cooling applicability in different road embankments and to optimize the new structure for further application in highway embankments with a wider pavement based on a validated convection heat transfer model. The results indicate that the new SCPS can produce an effective cooling process on the embankment slopes and the underlying permafrost. This caused an evident decrease in permafrost temperature at the subgrade shoulders and a significant elevation of the permafrost table below it. The intensified convection cooling in winter and good thermal insulation in summer generate the excellent cooling of the SCPS. However, the cooling range of SCPS is limited for a wide highway embankment. The highly endothermic asphalt surface makes it difficult for the SCPS to cool the embankment core effectively. To enhance the cooling adaptability, an optimized structure combining insulation and the SCPS proved that it can significantly expand the cooling scope to the embankment core and further raise the permafrost table beneath a wider embankment. This study confirms the application of the new SCPS as a highly efficient technique for maintaining the integrity of narrow railway embankments, examines its possible utilization in wider highway embankments, and promotes the efficient use of the natural cold energy in the plateau permafrost zones.
机译:如何应对碎石装饰堤的问题面临,如冷却,砂填充和岩石风化不足,对于在温暖的永久冻土(> -1.0°C)内建造的道路的完整性和安全服务是重要的)在西藏高原。在这项研究中,开发了一种新的坡度冷却和保护结构(SCP),在高原多年冻土区实施了田间实验,以检测其对多年冻土层的冷却效果。然后进行数值模拟以评估其在不同道路路堤中的冷却适用性,并利用基于验证的对流传热模型的更宽路面优化在公路堤中的进一步应用的新结构。结果表明,新的SCP可以在堤防斜坡和底层永久冻土上产生有效的冷却过程。这引起了Probgrade肩部的永久冻土温度明显降低,并在其下方的永久冻土表的显着高度。冬季冬季和良好的隔热性冷凝冷却产生的对流冷却产生SCP的优异冷却。然而,SCP的冷却范围限于宽阔的公路路堤。高吸热沥青表面使SCP难以有效地冷却堤防核心。为了提高冷却适应性,优化的结构组合绝缘和SCPS证明它可以显着扩展到堤防核心的冷却范围,并进一步升高了更广泛的堤防下方的永久冻土桌。本研究证实了新的SCP作为维持狭窄铁路堤的完整性的高效技术,审查其在更广泛的公路堤中可能的利用,并促进了高原永久冻土区域的自然冷能的有效利用。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第12期|120388.1-120388.16|共16页
  • 作者单位

    State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources. Chinese Academy of Sciences Lanzhou Gansu 730000 China;

    State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources. Chinese Academy of Sciences Lanzhou Gansu 730000 China;

    State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources. Chinese Academy of Sciences Lanzhou Gansu 730000 China;

    State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources. Chinese Academy of Sciences Lanzhou Gansu 730000 China;

    State Key Laboratory of Frozen Soil Engineering Northwest Institute of Eco-Environment and Resources. Chinese Academy of Sciences Lanzhou Gansu 730000 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Slope-cooling, rock revetment; Cooling performance; Structure optimization; Permafrost;

    机译:坡式冷却;岩石护套;冷却性能;结构优化;永久冻土;

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