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Parametric Analysis of Non-Adiabatic Transcritical Flow in Capillary Tubes for a New Refrigeration Cycle

机译:新型制冷循环毛细管中非绝热跨临界流量的参数分析

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This paper presents a non-adiabatic homogeneous model of carbon dioxide flow in a novel integrated accumulator-expander-heat exchanger, which integrates the functions of refrigerant storage, expansion and heat transfer, and can lower weight and cost of the system. The model is based on the fundamental conservation equations of mass, momentum and energy. These equations are solved simultaneously through iterations. The in-tube flow can be divided into a single-phase region and a two-phase region. The choking situation at the capillary outlet is evaluated by local sonic velocity judgment. Relationships between cooling pressure, evaporating temperature, capillary size, and other parameters are presented and analyzed in detail. It can be seen that the heat transfer changes with different kinds of capillary tubes under different conditions. The present model can be used for both system design and performance evaluation. It is also very helpful in understanding the transcritical flow behavior inside capillary tubes.
机译:本文介绍了一种新型集成蓄能器 - 扩展器 - 换热器中的二氧化碳流量的非绝热均匀模型,其集成了制冷剂储存,膨胀和传热的功能,并且可以降低系统的重量和成本。该模型基于质量,动量和能量的基本保护方程。这些等式通过迭代同时解决。管内流可以被分成单相区域和两相区域。毛细管出口处的窒息情况是通过局部声速判断来评估的。详细介绍和分析了冷却压力,蒸发温度,毛细管尺寸和其他参数之间的关系。可以看出,在不同条件下,传热随着不同种类的毛细管变化。本模型可用于系统设计和性能评估。理解毛细管内的跨临界流动行为也非常有帮助。

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