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Performance evaluation of household refrigerators running with R600a contaminated with non-condensable gases

机译:使用R600A污染不可凝聚气体的家用冰箱的性能评估

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This article reports an experimental study of performance degradation and expansion noise generation in a household refrigerator running with isobutane contaminated with non-condensable gases (NCGs). Controlled amounts of nitrogen were injected into the system using a purpose-built device. The refrigerant flow at the capillary inlet was visualized while an accelerometer recorded the expansion noise at the evaporator inlet. Steady-state performance tests were carried with different nitrogen contamination levels at various compressor speeds. A high sub-cooling degree and an increased discharge pressure showed to be strong evidences of the presence of non-condensable gases. Even though the thermodynamic variables reached steady-state conditions, large fluctuations were observed for the flow pattern at the capillary tube inlet and in the acceleration readings. Therefore, standardized cyclic energy consumption and pull-down tests were also conducted to evaluate the effect of NCGs on the refrigerator transients. It was noticed that the energy consumption increased up to 25.9% when the system was doped with a mass fraction of 0.43% of N-2. Also, a quasi-linear increase of the energy consumption with the N-2 mass fraction was observed. Furthermore, the system pull-down time increased by up to 10-h due to NCG contamination. A visual inspection revealed that the performance degradation was related to a partial clogging of the capillary tube that unbalanced the compressor and expansion device mass flow rates, preventing the system to reach steady-state conditions. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:本文报道了一种用不可冷凝气体(NCGS)污染的异丁烷运行的家用冰箱中性能降解和膨胀噪声产生的实验研究。使用目的地装置将受控量的氮气注入系统中。在加速度计记录蒸发器入口处的膨胀噪声时,可视化毛细管入口处的制冷剂流。稳态性能测试以各种压缩机速度以不同的氮污染水平携带。高级冷却度和增加的排出压力显示出不可冷凝气体存在的强大证据。尽管热力变量达到稳态条件,但对于毛细管入口处的流动模式和加速度读数,观察到大的波动。因此,还进行了标准化的循环能量消耗和下拉测试以评估NCGS对冰箱瞬变的影响。当系统被掺杂时,能量消耗增加了25.9%,其质量分数为0.43%N-2。而且,观察到具有N-2质量分数的能量消耗的准线性增加。此外,由于NCG污染,系统下拉时间增加到10-H.目视检查显示,性能下降与毛细管的部分堵塞有关,毛细管的毛细管与压缩机和膨胀装置质量流量不平衡,防止系统达到稳态条件。 (c)2019年Elsevier Ltd和IIR。版权所有。

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