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REFRIGERATION SYSTEM WITH INTEGRATED LIQUID LINE AND LOW ENVIRONMENTAL IMPACT

机译:具有集成液体线的制冷系统和低环境影响

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摘要

A design of a low charge refrigerating system based on microchannels technology for the condenser, a compact evaporator and a reduced diameter liquid line is presented. The design of the liquid line of a refrigerating system is specially detailed. Usually designed to avoid pre-expansion before entering in the expansion device, it is shown in this study that a drastic reduction of the pipe diameter is possible by cooling progressively the liquid. An adapted design using this principle, called "integrated liquid line" (ILL) has been developed and its impact on refrigerant charge and energy performance has been evaluated experimentally for a cold room refrigerating unit. A numerical model of the ILL, validated on this experimental device for various running conditions, has been developed and can be used as a design tool for other systems. Experimental measurements were performed and compared to a reference system. Coupled with micro-channel exchangers, a significant reduction of the internal volume and consequently of the refrigerant charge can been reached.
机译:提出了一种基于微通道技术的冷凝器,紧凑型蒸发器和减小直径液体线的低电荷制冷系统的设计。制冷系统的液体线的设计特别详细。通常旨在避免在进入膨胀装置之前避免预膨胀,在该研究中示出了通过逐步冷却液体来逐渐冷却的管直径的急剧降低。已经开发了使用该原理的适应性设计,称为“集成液体线”(ILL),并对冷藏室制冷单元进行了实验评估了对制冷剂充电和能量性能的影响。已经开发出用于各种运行条件的该实验装置的病例的数值模型,并且可以用作其他系统的设计工具。进行实验测量并与参考系统进行比较。与微通道交换器相结合,可以达到内部容积的显着降低,因此可以达到制冷剂电荷。

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