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Thermal Performance and Moisture Accumulation of Mechanical Pipe Insulation Systems Operating at Below Ambient Temperature in Wet Conditions with Moisture Ingress

机译:湿润条件下低于环境温度的机械管绝缘系统的热性能和湿度累积

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When pipes are used for chilled water, glycol brines, refrigerants, and other chilled fluids, energy must be spent to compensate for heat gains through the wall of the pipes. Higher fluid temperature at the point of use decreases the efficiency of the end-use heat exchangers and increases the parasitic energy consumption. Mechanical pipe insulation systems are often used to limit the heat gains and save energy in commercial buildings. Pipe insulation systems play an important role for the health of the occupied space. When a chilled pipe is uninsulated or inadequately insulated, condensation might occur and water will drip onto other building surfaces possibly causing mold growth. The critical issue with cold pipes is that the temperature difference between the pipe and its surrounding ambient air drives water vapor in to the insulation system and condensation commonly occurs when the water vapor comes in contact with the chilled pipe surface. This paper experimentally studies this issue for pipe insulation systems operating at below ambient temperature. The moisture content and the associated thermal conductivity of several pipe insulation systems were measured at various wet condensing conditions with moisture ingress. Accelerated type tests in laboratory showed the propensity of moisture accumulation in several insulation systems due to the cylindrical configuration, split joints, and micro-imperfections in the jacketing system. The data in the present work showed that the thermal conductivity increased systematically when water vapor entered the pipe insulation system.
机译:当管用于冷却水,乙二醇盐水,制冷剂,和其它冷冻流体,能量必须花费来补偿通过管道的壁的热增益。在使用点较高流体温度降低最终用途的热交换器的效率,并且增加了寄生能量消耗。机械管道保温系统经常被用来限制热收益和节约能源的商业建筑。管道保温系统中发挥了占用空间的健康有重要作用。当冷却管道是非绝缘的或不充分的绝缘,则可能会出现冷凝和水会滴落到其它建筑物表面可能导致霉菌生长。用冷的管道中的关键问题是,在绝缘系统和冷凝的管及其周围的环境空气中的驱动器的水蒸汽之间的温差时,水蒸汽开始与冷冻管表面接触通常发生。本文实验研究这个问题在以下环境温度下工作管道保温系统。水分含量和几个管道保温系统的相关联的热导率在与湿气进入各种湿式冷凝条件下测得。在实验室的加速类型的试验表明,由于圆柱形构造,分割接头,并在护套系统微缺陷在几个绝缘系统水分聚积的倾向。在目前的工作中的数据表明,该热导率增加的系统时的水蒸汽进入管道保温系统。

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