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Investigation of the Insulation Effect of Thermal Insulation Layer in the Seasonally Frozen Region Tunnel: A Case Study in the Zuomutai Tunnel, China

机译:季节性冷冻区隧道中保温层保温效应的研究 - 以中国Zuomutai隧道为例

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In this study, a field temperature test was performed to reveal the insulation effect of the thermal insulation layer installed at lining surface. The thermal insulation layer is made of polyphenolic, and the thickness is 7?cm. According to the test results, the temperature of the thermal insulation layer and lining continuously changes with the air temperature in the tunnel in an approximately trigonometric function. The temperature of tunnel lining without thermal insulation layer is close to the air temperature, which results in the lining frost in winter. The maximum temperature difference between the two sides of the thermal insulation layer can be 27°C. In the section whose buried depth is more than 11.4?m, the temperature of lining with thermal insulation layer in winter is mainly influenced by the cold air in the tunnel. When the monthly mean and lowest daily mean air temperature are lower than ?10°C and ?14.3°C in the coldest month, the temperature at the inner side of the thermal insulation layer is below 0°C. When the buried depth is less than 11.4?m, the temperature of lining is also influenced by the low temperature at ground surface. The temperature of lining is lower. The thicker thermal insulation layer and even active heat measure are needed. Therefore, the design of thermal insulation layer thickness should consider the air temperature distribution and tunnel buried depth along the tunnel length.
机译:在该研究中,进行现场温度测试以揭示安装在衬砌表面上的隔热层的绝缘效果。隔热层由多酚制成,厚度为7Ωcm。根据测试结果,在近似三角函数中,隔热层和衬里的温度随着隧道中的空气温度而连续变化。没有保温层的隧道衬里的温度接近空气温度,这导致冬季衬里霜冻。隔热层的两侧之间的最大温度差可以是27°C。在埋设深度超过11.4的部分中,冬季衬里衬里的温度主要受到隧道中冷空气的影响。当每月平均值和最低的每日平均空气温度低于10°C和?14.3°C时,隔热层内侧的温度低于0℃。当埋深小于11.4μm时,衬里的温度也受到地面低温的影响。衬里的温度较低。需要较厚的隔热层甚至有源热量。因此,隔热层厚度的设计应考虑沿着隧道长度的空气温度分布和隧道埋入深度。

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