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Conversion of existing vapor cycle system from R-114 to R-134a

机译:将现有蒸汽循环系统从R-114转换为R-134a

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Production of chlorofluorocarbons (CFCs) is being banned due to environmental concerns regarding ozone depletion. All CFCs are anticipated to be out of production by the year 2000. This ban has prompted the need for converting existing systems to use atmospherically safe refrigerants or replacing the systems altogether with environmentally safe alternatives. This paper documents an analytical study initiated on the E-2C aircraft program to assess requirements for converting the existing vapor cycle system from R-114 to R-134a. The effort focused on determining the maximum cooling capability readily achievable with the new fluid within the present system volume, and identifying the associated changes in vapor cycle system weight and power required to maintain at least the existing system capacity. Particular emphasis was placed on avoiding changes to the ram air scoop to eliminate flying qualities impact. A vapor cycle performance code was developed to obtain maximum system cooling capacities at the design condition for several component configurations. Parametric analyses were also used in assessing required compressor characteristics over a range of cooling loads and compressor efficiencies.
机译:由于对臭氧消耗的环境问题,正在禁止产量氯氟烃(CFCS)。预计所有氟氯烃均预计将在2000年内退出生产。本禁令促使现有系统转换为使用大气安全制冷剂或使用环保替代品完全更换系统。本文介绍了在E-2C飞机计划上发起的分析研究,以评估将现有蒸汽循环系统从R-114转换为R-134a的要求。努力集中在当前系统体积内的新流体确定最大冷却能力,并识别维持至少现有系统容量所需的蒸汽循环系统重量和功率的相关变化。特别强调避免改变Ram Air Scoop以消除飞行质量的影响。开发了一种蒸汽循环性能代码,以获得多个组件配置的设计条件下的最大系统冷却能力。参数分析也用于评估一系列冷却负荷和压缩机效率的所需压缩机特性。

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