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Investigation of low Global Warming Potential working fluids for a closed two-phase thermosyphon

机译:封闭的两相热虹吸管的低全球升温潜能值工作流体的研究

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Two-phase thermosyphons are devices offering very high thermal conductance. The study reported here examined two-phase thermosyphons of length 2200 mm and external diameter 15.9 mm. Potential applications include air to air heat exchangers with operating temperature ranges of -10-50℃ for the ambient (cold) side and 60-80℃ for the hot side. The work is prompted by the fact that R134a, used in similar units, will be subject to a ban in the future as it has a high Global Warming Potential. A shortlist of potential replacement fluids was drawn up, and considering the environmental, operating and storage conditions, and cost, five were selected for tests in representative thermosyphons. The results of the experimental work showed a water-5% ethylene glycol mixture was a suitable replacement fluid, although under certain conditions its performance was less than that of R134a. The tests also showed water alone can give the highest heat transfer, although it is not suited to the target temperature range, and methanol did not perform as well as R134a for most of the experimental range. A predictive model based on the equations published by ESDU International was developed. It was found to give good results for water, workable results for water-5% ethylene glycol, be of limited use for methanol and be unsuitable for R134a.
机译:两相热虹吸管是提供很高热导率的设备。此处报道的研究检查了长度为2200 mm,外径为15.9 mm的两相热虹吸管。潜在的应用包括空气到空气的热交换器,环境(冷)侧的工作温度范围为-10-50℃,热侧为60-80℃。由于类似的单位中使用的R134a具有很高的全球变暖潜能,因此将来将被禁止使用,这促使了这项工作。拟定了一份潜在的替代液清单,并考虑到环境,操作和存储条件以及成本,选择了五种用于代表性的热虹吸管进行测试。实验工作的结果表明,水-5%乙二醇混合物是一种合适的替代液,尽管在某些条件下其性能低于R134a。测试还显示,尽管水不适合目标温度范围,但仅水可以提供最高的热传递,并且在大多数实验范围内,甲醇的性能均不如R134a。基于ESDU International发布的方程式建立了预测模型。发现对水给出良好的结果,对水-5%的乙二醇具有可行的结果,对甲醇的用途有限,并且不适用于R134a。

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