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Transcritical CO2 commercial refrigeration plant with adiabatic gas cooler and subcooling via HVAC: Field tests and modelling

机译:跨临界二氧化碳商业制冷厂,具有绝热气体冷却器和通过HVAC过过冷却:现场试验和造型

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Subcooling methods at the exit of the gas cooler in transcritical CO2 commercial refrigeration systems have been studied in the recent years showing that overall remarkable improvements can be obtained. Another strategy that results efficient is the use of evaporative systems at the gas cooler (adiabatic cooling) as it allows to significantly reduce the refrigerant quality at the liquid receiver and to lower the heat rejection pressure. In this work, a fully instrumented CO2 transcritical booster system with parallel compression, in operation in a small size supermarket in northern Italy, made available measured data of its performance when subcooling and/or adiabatic cooling are active. The plant operates in a mild climate, where it suffers operation at transcritical conditions for most of the year. Subcooling in this plant is performed by coupling the refrigeration system with the HVAC system. Taking advantage of experimental measurements, a model in the TRNSYS environment is validated and allows the prediction of the annual plant performance when these strategies are adopted. The adiabatic cooling showed to allow a significant reduction (about 10%) in the energy use, and makes unnecessary the use of a parallel compressor. Subcooling by the HVAC gives rise to a reduced saving (2.9%) due to the absence of a dedicated mechanical subcooler, however it is almost comparable to parallel compression. These trends are confirmed in two other hot and humid climates. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:在近年来近年来,在跨临界二氧化碳商业制冷系统中的气体冷却器出口处的过冷方法已经在近年来显示可以获得总体显着的改进。结果有效的另一种策略是在气体冷却器(绝热冷却)上使用蒸发系统,因为它允许显着降低液体接收器处的制冷剂质量并降低排热压。在这项工作中,在意大利北部的小型超市运行中,具有平行压缩的完全仪表的CO2跨临界助推器系统,在过冷和/或绝热冷却有效时,其性能的测量数据可用。该植物在温和的气氛中运行,其中大部分时间都在跨临界条件下运行。通过将制冷系统与HVAC系统耦合来执行该厂中的过冷。利用实验测量,验证了TRNSYS环境中的模型,并允许在采用这些策略时预测年度植物性能。绝热冷却显示在能量使用中允许显着减少(约10%),并且不必使用平行压缩机。由于没有专用的机械过冷却器,HVAC的过冷却由于没有专用的机械过冷却器而导致节省减少(2.9%),但它几乎与平行压缩相当。这些趋势在另外两个炎热和潮湿的气候中得到了确认。 (c)2019年Elsevier Ltd和IIR。版权所有。

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