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Energy-Efficient Air-Cooled DX Air-Conditioning Systems with Liquid Pressure Amplification

机译:节能风冷DX空调系统,具有液压放大

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The objective of this study is to explore an optimal strategy on energy consumption for a direct expansion (DX) air-conditioning system by using a refrigerant pump in the liquid line to allow the system to operate at a lower condensing pressure. An existing DX rooftop package of a commercial building located in a hot and dry climate zone is used for data collection. The theoretical-empirical modelling approach is used to obtain system model, from which the proposed strategy is formulated. A numerical algorithm is developed to analyse the system transient performance, using an iterative loop. As a minimum pressure differential is required across the expansion device, liquid pressure amplification (LPA) devices can be used on DX systems that operate with fixed head pressure control. They can be fitted to new or existing systems. Results show that the LPA approach is more effective when the ambient temperature is falling, with electricity saving around 25.3% in average.
机译:本研究的目的是通过在液体线中使用制冷剂泵来探讨直接膨胀(DX)空调系统的能耗的最佳策略,以允许系统在较低的冷凝压力下操作。现有的DX屋顶封装位于热和干燥气候区的商业建筑物用于数据收集。理论上模型建模方法用于获得系统模型,从中制定了所提出的策略。开发了一种数值算法来使用迭代循环来分析系统瞬态性能。随着膨胀装置所需的最小压差,液压放大(LPA)器件可用于使用固定头压力控制的DX系统。它们可以适合新的或现有的系统。结果表明,当环境温度下降时,LPA的方法更有效,电力平均为25.3%。

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