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Energy influence of the IHX with R22 drop-in and long-term substitutes in refrigeration plants

机译:IHX与制冷设备中R22滴入和长期替代品的能量影响

摘要

This work focuses on the investigation of new drop-in or long-term refrigerants for low evaporating temperatures that can be used as substitutes for HCFC-22, which is gradually being phased-out. This process is already in progress in European countries (Regulation CE-1005/2009) and has been accelerated in Article 5 Countries of the Montreal Protocol. Specifically, in this work the energy influence of the suction line/liquid line heat exchanger on the new substitute fluids is addressed from an experimental approach.The study has been based on experimental measurements in a single-stage vapour compression refrigeration plant, which has been tested in the same external conditions operating with and without an Internal Heat Exchanger (IHX). The energy influence of the IHX working with R22 and three potential substitutes for low temperature applications, the chlorine-free drop-in fluids R417B and R422A and the chlorine-free long-term substitute R404A has been analysed.From the experimental results, reductions in capacity and COP have been observed when R22 is replaced by the drop-in fluids, although the presence of an IHX can help to lessen these reductions. Furthermore, the criteria that are usually employed to determine the energy advantage or disadvantage of the use of the IHX with the new refrigerants have been tested, the results confirming that they remain valid for them.
机译:这项工作的重点是研究可用于逐步淘汰的可用于替代HCFC-22的,用于低蒸发温度的新的长期或长期使用的制冷剂。欧洲国家已经在进行此过程(CE-1005 / 2009条例),《蒙特利尔议定书》第5条国家已加快了这一过程。具体而言,在这项工作中,通过实验方法解决了吸入管线/液体管线热交换器对新替代流体的能量影响。该研究基于单级蒸汽压缩制冷设备中的实验测量结果在使用和不使用内部热交换器(IHX)的相同外部条件下进行测试。 IHX与R22和三种潜在的低温替代品,无氯滴入流体R417B和R422A以及无氯长期替代品R404A一起使用时的能量影响进行了分析。尽管使用IHX可以帮助减少这些减少,但当用滴入的流体代替R22时,已观察到容量和COP。此外,已经测试了通常用于确定在新制冷剂中使用IHX的能源优势或劣势的标准,结果证实了它们对它们仍然有效。

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