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Modeling and simulation of a falling film evaporator for a water vapor heat pump system

机译:水蒸气热泵系统降膜蒸发器的建模与仿真

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With the advantages of excellent heat transfer performance and less refrigerant charge, falling film evaporator has been widely used in seawater desalination and other industries. However, due to the practical problems of liquid level control and dry patches interactions, the structure design of falling film evaporator should be optimized for refrigeration applications. To resolve those problems, a simulation model for water-to-water falling film evaporator used in a water vapor heat pump system was conducted in this paper. Through the finite element method, the temperature distribution along the working tubes and the heat exchanger has been obtained. The distribution of heat transfer coefficient along the tube is also investigated to find out the best liquid level control solutions. For an available falling film evaporator with 4 pass working tubes under boiling temperature of 80 degrees C and spraying mass of 0.4 kg.s(-1), it is suggested that 2 pass working tubes should be in falling film region in order to achieve the largest heating capacity. Most important of all, it is proposed that there is an optimal boundary line between full liquid and falling film region. It may provide some suggestions for future design of falling film evaporators.
机译:降膜蒸发器具有优良的传热性能和较少的制冷剂充注量,已被广泛用于海水淡化等行业。然而,由于液位控制和干膜相互作用的实际问题,降膜蒸发器的结构设计应针对制冷应用进行优化。为解决这些问题,本文建立了水蒸汽热泵系统中水到水降膜蒸发器的仿真模型。通过有限元方法,获得了沿工作管和热交换器的温度分布。还研究了沿管的传热系数分布,以找出最佳的液位控制解决方案。对于沸腾温度为80摄氏度,喷涂质量为0.4 kg.s(-1)的带有四道工作管的降膜蒸发器,建议在降膜区域内使用两道工作管以实现最大的供暖能力。最重要的是,建议在全液体和降膜区域之间存在一条最佳边界线。它可以为降膜蒸发器的未来设计提供一些建议。

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