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Simulation on effects of subcooler on cooling performance of multi-split variable refrigerant flow systems with different lengths of refrigerant pipeline

机译:过冷器对不同长度制冷剂管道的多分裂可变制冷剂流量系统冷却性能的模拟

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摘要

Multi-split variable refrigerant flow (VRF) systems have wide applications in offices and commercial buildings. In the multi-split VRF system, a subcooler is usually adopted to avoid flash vapor generation in the liquid pipeline. At present, the effects of the refrigerant pipeline length of the multi-split VRF system with a subcooler have not yet been investigated, nor the optimization of the subcooler. In this paper, the model of a multi-split VRF system with a subcooler has been developed and validated. In nine cases with different lengths of the main pipelines and the subcooling heat exchanger (SCHX), the cooling performance of a multi-split VRF system has been studied by simulation. The results indicate that the subcooler has little benefit in a system with a short pipeline, while it can help improve the coefficient of performance (COP) of a system with a long pipeline by controlling the bypass mass flow rate ratio in a proper range, and a higher maximum COP can be obtained by increasing the length of the SCHX in the subcooler. Furthermore, it is recommended to control the outlet superheated degree of the bypass stream in the SCHX in order to maximize the COP of a multi-split VRF system. (C) 2016 Elsevier B.V. All rights reserved.
机译:多分裂可变制冷剂流量(VRF)系统在办公室和商业建筑中具有广泛的应用。在多分流式VRF系统中,通常采用过冷器以避免在液体管道中产生闪蒸气。目前,尚未研究具有过冷器的多分裂VRF系统的制冷剂管道长度的影响,也未研究过冷器的优化。在本文中,已经开发并验证了带有过冷器的多分裂VRF系统的模型。在九种不同长度的主管道和过冷热交换器(SCHX)的情况下,通过仿真研究了多分裂VRF系统的冷却性能。结果表明,过冷器在管线短的系统中几乎没有好处,而通过将旁路质量流量比控制在适当的范围内,可以帮助改善管线长的系统的性能系数(COP),并且通过增加过冷器中SCHX的长度,可以获得更高的最大COP。此外,建议控制SCHX中旁路流的出口过热度,以使多分裂VRF系统的COP最大化。 (C)2016 Elsevier B.V.保留所有权利。

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