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Bubble Columns for Condensation at High Concentrations of Noncondensable Gas: Heat-Transfer Model and Experiments

机译:高浓度不凝性气体冷凝用鼓泡塔:传热模型和实验

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摘要

Carrier gas based thermodynamic cycles are common in water desalination applications. These cycles often require condensation of water vapor out of the carrier gas stream. As the earner gas is most likely a noncondensable gas present in very high concentrations (60-95%), a large additional resistance to heat transfer is present. It is proposed to reduce the aforementioned thermal resistance by condensing the vapor-gas mixture in a column of cold liquid rather than on a cold surface using a bubble column heat exchanger. A theoretical predictive model for estimating the heat-transfer rates and new experimental data to validate this model are described. The model is purely physics based without the need for any adjustable parameters, and it is shown to predict heat rates within 0 to —20% of the experimental values. The experiments demonstrate that heat-transfer rates in the proposed device are up to an order magnitude higher than those achieved in existing state-of-the-art dehumidifiers.
机译:基于载气的热力循环在水淡化应用中很常见。这些循环通常需要将水蒸气从载气流中冷凝出来。由于生成气体很可能以非常高的浓度(60-95%)存在,因此不存在冷凝气体,因此存在较大的传热阻力。提出了通过使用鼓泡塔式热交换器在冷液体塔中而不是在冷表面上冷凝蒸气-气体混合物来降低上述热阻。描述了用于估计传热速率的理论预测模型和验证该模型的新实验数据。该模型完全基于物理学,不需要任何可调整的参数,并且可以预测热速率在实验值的0%到-20%之间。实验表明,所提出的装置中的传热速率比现有的最新除湿机所达到的传热速率高一个数量级。

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