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Numerical investigation on thermal insulation layer of a tunnel in seasonally frozen regions

机译:季节性冷冻区隧道隔热层的数值研究

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摘要

As an effective engineering measure, thermal insulation layer is used to prevent tunnel from frost heave damage in seasonally frozen regions. Two different methods are generally adopted to lay insulation layer. One is to lay the insulation layer between the preliminary lining and the secondary lining. The other is to lay the insulation layer on the surface of the secondary lining. But, there is no evidence to show which method is more useful. Meantime, the relationship between the insulation effect and thermal conductivity as well as thickness of insulation layer should be identified. To solve these problems, a numerical heat-moisture coupled model for the tunnel in a seasonally frozen region is established, which involves heat conduction, water migration and phase transition. And then, a representative tunnel in the Northwest of China is taken as an example to explore the heat-moisture state of the tunnel. Afterwards, the thermal insulation effect and the effect of location of thermal insulation layer on thermal state are analyzed. Subsequently, the methods on thermal conductivity and thickness of thermal insulation layer are constructed and the relationship among the insulation effect, thermal conductivity and thickness is obtained for heat insulation effect.
机译:作为一种有效的工程测量,热绝缘层用于防止隧道在季节性冷冻区域中的霜冻损坏。通常采用两种不同的方法来铺设绝缘层。一个是在初步衬里和二级衬里之间铺设绝缘层。另一个是将绝缘层铺设在二次衬里的表面上。但是,没有证据表明哪种方法更有用。同时,应识别绝缘效果与导热系之间的关系以及绝缘层的厚度。为了解决这些问题,建立了季节性冷冻区域中的隧道的数值热分水分耦合模型,其涉及导热,水迁移和相变。然后,中国西北部的代表隧道被认为是探索隧道的热分状态的示例。然后,分析了热绝缘效应和隔热层位置对热状态的影响。随后,构造了对热绝缘层的导热率和厚度的方法,并且获得了绝缘效果,导热率和厚度的关系,用于隔热效果。

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