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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >R290 (propane) and R600a (isobutane) as natural refrigerants for residential heat pump water heaters
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R290 (propane) and R600a (isobutane) as natural refrigerants for residential heat pump water heaters

机译:R290(丙烷)和R600A(异丁烷)作为住宅热泵热水器的天然制冷剂

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HighlightsA HPDM model has been used to evaluate the performance of hydrocarbon as refrigerants for HPWH applications.The UEF and FHR have been used to evaluate the performance of R134a, R290 and R600a refrigerants.Different condenser wrap patterns and storage tank thermal insulation effectiveness have been consider.The impact of compressor discharge temperature, water stratification has been evaluated.The impact of saturation temperature change in condenser and total refrigerant charge has been evaluated.AbstractGrowing awareness of the potential environmental impacts of various refrigerants has led to the phasedown of hydrofluorocarbon (HFC) refrigerants and to initiatives replacing HFCs with hydrocarbons or other environmentally friendlier fluids. This study evaluated the performance of R290 (propane) and R600a (isobutane) as substitutes for R134a (a HFC) for heat pump water heating (HPWH). A component-based model (calibrated against the experimental data) was used to predict the performance of the HPWH system. Key performance parameters such as unified energy factor, first hour rating, condenser discharge temperature, thermal stratification in the water tank, and total refrigerant charge were investigated. Analysis results suggest that both alternative refrigerants could provide comparable system performance to that of the baseline system containing R134a, with one caveat. As a drop-in alternative, R290 was found to be a better substitute for R134a, whereas R600a is expected to provide similar performance if the compressor size is increased to provide similar heating capacity. Significant reductions in system charge and lower condenser discharge temperatures were identified as additional benefits.]]>
机译:<![cdata [ 亮点 HPDM模型已被用于评估碳氢化合物作为HPWH应用的制冷剂的性能。 UEF和FHR已被用于评估R134A,R290和R600A制冷剂的性能。 不同的冷凝器包装模式和储罐热绝缘效果已考虑。 < CE:列表 - 项目ID =“O0020”> 压缩机放电温度的影响,已经评估了水分。 已经评估了冷凝器饱​​和温度变化的影响和总制冷剂电荷。 抽象 越来越多的对各种制冷剂的潜在环境影响的认识导致了氢氟碳(HFC)制冷剂的泛镇,并促进用碳氢化合物或其他环境更友好的液体替代HFC。该研究评估了R290(丙烷)和R600A(异丁烷)作为用于热泵水加热(HPWH)的R134A(HFC)的替代品的替代品的性能。基于组件的模型(校准了对实验数据)来预测HPWH系统的性能。研究了统一能量因子,第一小时额定值,冷凝器排出温度,水箱中的热分层和总制冷剂电荷等关键性能参数。分析结果表明,两种替代制冷剂都可以为含有R134A的基线系统提供可比的系统性能,其中一个警告。作为一种替代方案,发现R290是R134A更好的替代品,而R600A预计如果增加压缩机尺寸以提供类似的加热容量,则R600A预期提供类似的性能。系统充电和降低冷凝器放电温度的显着降低被确定为额外的益处。 ]]>

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