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Mathematical modeling of heat transfer, condensation, and capillary flow in porous insulation on a cold pipe

机译:冷管上多孔绝热层中传热,冷凝和毛细流动的数学模型

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摘要

Porous insulation used on pipes carrying cold fluids suffers thermal degradation due to condensation of water vapor and the build up of water in the insulation. Recently, it has been suggested that the thermal degradation can be significantly reduced by wrapping a hydrophilic wick fabric on the cold pipe. The capillary action of the fabric, aided by gravity, allows the condensed moisture to move to the outer surface of the insulation, from where, if ambient conditions are right, it evaporates. This paper presents the details of a mathematical model for condensation in the insulation in the presence of the wick fabric. The model is based on the volume-averaged equations for unsteady transport of heat, water vapor, and liquid water in a porous medium. The wick is modeled as an anisotropic porous medium. The model also allows for the presence of a vapor retarder jacket that is used to reduce the ingress of water vapor into the insulation. The model has been applied to an insulation layer around a horizontal pipe. The presence of the wick is shown to significantly reduce the amount of liquid water in the insulation. The results of the model have been verified using laboratory experiments and field tests.
机译:用于输送冷流体的管道上的多孔绝缘材料会由于水蒸气的冷凝和绝缘材料中积水而遭受热降解。近来,已经提出通过将亲水性芯吸织物包裹在冷管上可以显着降低热降解。在重力的帮助下,织物的毛细作用使凝结的水分移动到绝缘体的外表面,如果环境条件合适,水分将从那里蒸发。本文详细介绍了在存在芯吸织物的情况下绝缘体中凝结的数学模型。该模型基于体积平均方程,用于热,水蒸气和液态水在多孔介质中的非稳定传输。灯芯被建模为各向异性多孔介质。该模型还考虑到了阻气层护套的存在,该护套用于减少水蒸气进入绝缘层。该模型已应用于水平管道周围的隔热层。灯芯的存在可显着减少绝缘材料中的液态水量。该模型的结果已通过实验室实验和现场测试得到验证。

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