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Design and Analysis of Multiple Parallel-Pass Condensers

机译:多个平行通冷凝器的设计与分析

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This paper describes and analyzes a novel design of multiple parallel-pass (MPP) microchannel tube condenser and its applications to automotive A/C systems.A flow distributor concept is introduced in MPP condenser in order to enable parallel flow arrangement in adjacent flow paths.Throughout analysis of two-phase flow and heat transfer processes in MPP condenser,a two-phase zone augmentation technique is developed that can be employed to enhance condensation heat transfer and reduce pressure drop.Experiments in both visualization and heat transfer performance are carried out to evaluate MPP condensers by referencing a baseline PF condenser.Visual observation by using a high-speed camera indicates that a more uniform refrigerant quality entering the next cooling pass can be achieved in MPP condenser because superheat vapor through a pass-through hole on flow distributor directly injects into the separated liquid-vapor zone in a header tube.In addition,analytical and test results show MPP condenser,being designed to enlarge two-phase condensing zone,is able to improve cooling performance as high as 9.5% while its refrigerant mass flow increases as high as 13.34% when comparing to a benchmark PF condenser.
机译:本文介绍并分析了多个平行通道(MPP)微通道管冷凝器的新颖设计,其应用于汽车A / C系统。在MPP冷凝器中引入了流量分配器概念,以便在相邻的流动路径中能够平行流动布置。在MPP冷凝器中的两相流和传热过程的分析过程中,开发了一种两相带的增强技术,可以采用来增强冷凝传热并减少压力下降。进行可视化和传热性能的分析。通过参考基线PF冷凝器来评估MPP冷凝器。通过使用高速摄像机的观察表明,在MPP冷凝器中可以实现进入下一个冷却通道的更均匀的制冷剂质量,因为过热蒸汽直接通过流动分配器上的通过通孔蒸汽在集管管中注入分离的液体蒸气区。添加,分析和测试结果显示MP P冷凝器被设计为扩大两相冷凝区,能够提高高达9.5%的冷却性能,而当与基准PF冷凝器相比,其制冷剂质量流量高达13.34%。

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