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NOVEL REDUCED GWP REFRIGERANT COMPOSITIONS FOR STATIONARY AIR CONDITIONING

机译:用于静止空调的新型GWP制冷剂组合物

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The current fluids most widely used for small and mid-sized air conditioning systems globally are R-410A and R-22. While these fluids have many positive attributes for cooling, they are the subject of valid criticisms regarding their high direct global warming potential (GWP) and, in the case of R-22, ozone depletion potential (ODP). In the interest of improved environmental sustainability, a new class of refrigerant molecule has been developed, the hydrofluoroolefin, or HFO. While the very low direct GWP values of these molecules are attractive, none of the HFOs by themselves are fully satisfactory for use in conventional R-22 or R-410A type stationary air conditioning system designs, with concerns about capacity and flammability. Blended HFO based refrigerant candidates have been developed to provide better overall safety and performance, while retaining significant environmental sustainability properties versus the legacy refrigerants. Although no single candidate has yet been developed that meets every proposed requirement for a refrigerant fluid, this paper discusses three candidate fluids that have been developed to most nearly meet the most often cited sets of environmental, physical and performance properties for air conditioning. The candidates include DR-5A (R-454B pending) a 2L flammable gas that gives capacity performance near that of R-410A, a nonflammable composition for use to replace R-22 in high ambient temperature environments, DR-93 and a 2L flammable replacement for R-22 with a direct GWP of less than 150, DR-3. The trade-offs that exist between volumetric capacity, efficiency (COP), temperature glide, GWP value, and flammability have been explored and assessed. We report on the performance of the new compositions in both thermodynamic refrigeration cycle models at standard AC and high ambient temperature operating conditions, and in actual operating systems. These new compositions should provide useful options to help maintain the quality of life and health benefits from air conditioning and refrigeration, but in an energy efficient and environmentally sustainable manner.
机译:全球最广泛用于小型和中型空调系统的目前的流体是R-410A和R-22。虽然这些流体具有许多用于冷却的阳性属性,但它们是关于其高直接全球变暖潜力(GWP)的有效批评的主题,并且在R-22的情况下,臭氧耗尽潜力(ODP)。为了改善环境可持续性,已经开发了一类新的制冷剂分子,氢氟烯烃或HFO。虽然这些分子的极低直接GWP值具有吸引力,但HFO本身都不是在传统的R-22或R-410A型固定空调系统设计中充分令人满意,涉及容量和易燃性。已经开发出混合的HFO制冷剂候选者,以提供更好的整体安全性和性能,同时保留重大的环境可持续性特性与遗留制冷剂。虽然没有开发任何单一候选人,但符合制冷剂流体的每一个拟议要求,但本文讨论了三种候选流体,该候选流体已经开发为几乎满足最常见的空调的最常见的环境,物理和性能特性。候选者包括DR-5A(R-454b待处理)2L易燃气体,其提供R-410A的容量性能,用于更换高环境温度环境中的r-22的不易燃组合物,DR-93和2L易燃替换R-22,直接GWP小于150,DR-3。已经探索和评估了体积容量,效率(COP),温度滑行,GWP值和易燃性之间存在的权衡。我们报告了标准AC和高环境温度运行条件下的热力制冷循环模型中的新组合物的性能,以及实际操作系统。这些新的组合物应提供有用的选择,以帮助维护空调和制冷的生活质量和健康益处,而是以节能和环境可持续的方式。

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