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Evaluation of Alternative Refrigerants for Mini-Split Air Conditioners

机译:小型分体式空调的替代制冷剂评估

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The phaseout of hydrochlorofluorocarbon (HCFC) refrigerants in developing countries is currently underway according to the Montreal Protocol. R-22 is one of the most commonly used HCFCs in the developing nations. It is extremely well suited for air conditioning and refrigeration in high ambient temperature environments. Non-Article 5 countries have already gone through the phaseout of HCFCs and settled on using R-410A as the refrigerant of choice for air-conditioning applications. Previous studies have shown that R-410A results in significant capacity and performance degradation at higher ambient temperature conditions. There is a growing concern about finding alternative refrigerants to R-22 that would have zero ozone depletion potential (ODP), lower global warming potential (GWP), and, at the same time, maintain acceptable performance at higher ambient temperatures. Furthermore, the developed world's transition through higher-GWP refrigerants such as hydrofluorocarbons (HFCs) and HFC blends resulted in significant direct C0_2 equivalent emissions. It is imperative to develop a bridge for developing nations to avoid the transition from HCFC to HFC and then from HFC to alternative lower-GWP refrigerants. This paper summarizes data from an experimental campaign on alternative refrigerant evaluation for R-22 and R-410A substitutes for mini-split air conditioners designed for high ambient temperature environments. The experimental evaluation was performed according to ANSI/ASHRAE Standard 37 (2009), and the performance was rated at test conditions specified by ANSI/ AHRI 210-240 (2008) and ISO 5151 (2010). Additional tests were conducted at outdoor ambient temperatures of 52 °C and 55°C (125.6°F and 131°F) to evaluate the refrigerants' performance at high ambient conditions. Alternative refrigerants, some of which are proprietary, included R-444B, DR- 3, N-20b, ARM-20b, R-290, and DR-93 as alternatives to R- 22. R-32, DR-55, L41-2, ARM-71A, and HPR-2A were evaluated as alternatives to R-410A. The units' performances were first verified using the baseline refrigerant, and then a drop-in refrigerant evaluation followed, including soft optimization to ensure refrigerant performance was adequately represented. The soft optimization included (1) charge optimization, (2) lubricant change, and (3) flow control. This paper presents the relative performances (efficiency and capacity) of the alternative refrigerants compared with the baseline refrigerants at the different operating conditions. This paper concludes with remarks about the suitability of alternative refrigerants for R-22 and R-410A applications in high ambient temperature regions.
机译:根据《蒙特利尔议定书》,目前正在发展中国家逐步淘汰氢氯氟烃(HCFC)制冷剂。 R-22是发展中国家最常用的氟氯烃之一。它非常适合在高温环境下进行空调和制冷。非第5条国家已经淘汰了HCFC,并决定使用R-410A作为空调应用的首选制冷剂。先前的研究表明,R-410A在较高的环境温度条件下会导致容量和性能显着下降。人们越来越担心找到替代R-22的制冷剂,该制冷剂具有零臭氧消耗潜能(ODP),较低的全球变暖潜能(GWP),同时在较高的环境温度下保持可接受的性能。此外,发达国家通过高全球升温潜能值制冷剂(例如氢氟碳化合物(HFCs)和HFC混合物)的过渡导致大量直接CO2当量排放。必须为发展中国家架起一座桥梁,避免从HCFC过渡到HFC,然后再从HFC过渡到低全球升温潜能值较低的替代制冷剂。本文总结了一项针对R-22和R-410A替代制冷剂的替代制冷剂评估实验活动的数据,这些替代品是为高环境温度环境设计的微型分体式空调的。根据ANSI / ASHRAE标准37(2009)进行实验评估,并在ANSI / AHRI 210-240(2008)和ISO 5151(2010)指定的测试条件下对性能进行评级。在52°C和55°C(125.6°F和131°F)的室外环境温度下进行了附加测试,以评估制冷剂在高环境条件下的性能。替代制冷剂,其中一些是专有的,包括R-444B,DR-3,N-20b,ARM-20b,R-290和DR-93,作为R-22的替代品。R-32,DR-55,L41评估了-2,ARM-71A和HPR-2A作为R-410A的替代产品。首先使用基准制冷剂验证机组的性能,然后进行直接制冷剂评估,包括软优化以确保制冷剂性能得到充分体现。软优化包括(1)充油优化,(2)更换润滑油和(3)流量控制。本文介绍了在不同运行条件下,与基准制冷剂相比,替代制冷剂的相对性能(效率和容量)。本文以有关高环境温度区域中R-22和R-410A应用的替代制冷剂的适用性作为结论。

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  • 来源
    《ASHRAE Transactions》 |2017年第2017期|147-161|共15页
  • 作者单位

    Building Technologies Research and Integration Center, Oak Ridge National Laboratory (ORNL), Oak Ridge, TN;

    Building Technologies Research and Integration Center, Oak Ridge National Laboratory (ORNL), Oak Ridge, TN;

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  • 正文语种 eng
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