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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Retrofit of a liquid desiccant and evaporative cooling-assisted 100% outdoor air system for enhancing energy saving potential
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Retrofit of a liquid desiccant and evaporative cooling-assisted 100% outdoor air system for enhancing energy saving potential

机译:液体干燥剂和蒸发冷却辅助100%室外空气系统的改造,以提高节能潜力

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摘要

The objective of this research is to retrofit a liquid desiccant (LD) and indirect/direct evaporative cooling assisted 100% outdoor air system (LD-IDECOAS) to enhance its operating energy saving potential. Two retrofit cases of existing LD-IDECOAS have been considered. The first case involves replacing the indirect and direct evaporative coolers with an M-cycle or a dew-point indirect evaporative cooler (i.e., Case 1), and the other one involves adding an enthalpy exchanger before the LD unit of the system in case 1 (i.e., Case 2). By conducting detailed energy simulations for each retrofit case, the improvements in operating energy saving and the coefficient of performance (COP) over the existing LD-IDECOAS were quantitatively evaluated. The results showed that case 1 might provide enhancement in cooling capacity and thermal COP; however, the heating energy consumption for regenerating the desiccant solution increased with the higher process airflow rate when compared to the existing LD-IDECOAS. It was also found that the cooling capacity, thermal COP, and primary COP could be improved by adding a membrane enthalpy exchanger, as done in case 2, without any significant increase in the heating energy consumption for regenerating the desiccant solution. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是改造液体干燥剂(LD)和间接/直接蒸发冷却辅助100%室外空气系统(LD-IDECOAS),以提高其运行节能潜力。已经考虑了现有LD-IDECOAS的两个改装案例。第一种情况涉及用M循环或露点间接蒸发冷却器替换间接和直接蒸发冷却器(即情况1),而另一种情况涉及在情况1的系统的LD单元之前添加焓交换器。 (即案例2)。通过针对每个改造案例进行详细的能源模拟,定量评估了现有LD-IDECOAS所带来的运行节能和性能系数(COP)的改进。结果表明,案例1可能会增强制冷能力和散热COP;然而,与现有的LD-IDECOAS相比,用于干燥剂溶液再生的热能消耗随着工艺气流速率的增加而增加。还发现,如在情况2中一样,通过添加膜焓交换器可以提高冷却能力,热COP和一次COP,而不会显着增加用于再生干燥剂溶液的加热能量消耗。 (C)2016 Elsevier Ltd.保留所有权利。

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