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Energy and Economics Analyses of Condenser Evaporative Precooling for Various Climates, Buildings and Refrigerants

机译:各种气候,建筑物和制冷剂的冷凝器蒸发预冷的能量和经济学分析

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摘要

Condenser evaporative pre-coolers provide a low cost retrofit option for existing packaged rooftop air conditioning application units. This paper aimed to provide a comprehensive study to assess energy savings and peak power reductions of condenser evaporative cooling. Condenser evaporative cooling leads to a lower temperature of the air entering the condenser of a rooftop unit, which results in smaller compressor power consumption. Using EnergyPlus building energy simulations, we mapped the impacts on energy savings and energy reductions at peak ambient temperatures in three building types and 16 locations with levels of pad effectiveness and demonstrated the effects on air conditioner using either R22 or R410A as refrigerants. Economics and control strategy to maximize the cost saving were also investigated. The results demonstrate that energy savings are much greater for HVAC systems with the refrigerant R410A than they are with R22, and evaporative pre-cooling provides the opportunity for annual energy savings and peak demand reductions, with significant potential in hot, dry climates. Additionally, we validated an improved mathematical model for estimating the condenser pre-cooling wet bulb efficiency which shows clear advantage over the current EnergyPlus model.
机译:冷凝器蒸发预冷器为现有的包装屋顶空调应用单元提供低成本的改装选择。本文旨在提供综合研究,以评估电容节省和峰值功率降低的冷凝器蒸发冷却。冷凝器蒸发冷却导致进入屋顶单元的冷凝器的空气的较低温度,这导致压缩机功耗更小。使用EnergyPlus建筑能量模拟,我们在三种建筑类型的高峰环境温度下对节能和能量减少的影响,以及垫效力水平的16个位置,并使用R22或R410A作为制冷剂对空调的影响。还调查了最大化成本节约的经济和控制策略。结果表明,对于具有R22的制冷剂R410A的HVAC系统,节能的节能大大,并且蒸发预冷为年度节能和峰值需求减少提供了机会,具有炎热,干燥气候的显着潜力。此外,我们验证了一种改进的数学模型,用于估计电容器预冷湿灯泡效率,该灯泡效率明显于电池模型。

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