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Multi-stage liquid-desiccant air-conditioner: Experimental performance and model development

机译:多级除湿空调:实验性能和模型开发

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An experimental study evaluated the performance of a novel multi-stage liquid-desiccant air-conditioner featuring parallel inter-stage flows of cooling and heating water, and semi-series flows of desiccant. The system was tested at different inlet cooling water temperatures, ranging from 8 degrees C to 20 degrees C, using a solution of LiBr and water as the desiccant. Average total air cooling rates between 8.4 kW and 19.7 kW were observed, with higher cooling rates achieved with lower cooling water temperatures. The system was able to provide high sensible cooling rates of up to 8.8 kW. The cooling water temperature impacted the sensible cooling, but did not have a discernible impact on the latent cooling rate. The inlet air humidity was shown to have an impact on the latent cooling rate, with higher humidity leading to higher latent cooling rates. The energy consumption of the system was low, with an average thermal coefficient of performance (COP) of 0.58 and electrical COP of 4.7. A variable effectiveness model was developed in TRNSYS and proven to be accurate at predicting the air cooling, but further experimental work is required to improve the thermal energy consumption model. The modular design philosophy of the model allows for easy changes to the design (e.g., number of stages, fluid flow paths, operating conditions, etc.) enabling future work to improve the regenerator modeling once further experimentation is completed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:实验研究评估了一种新颖的多级液体干燥空调的性能,该空调具有冷却水和热水的平行级间流动以及干燥剂的半串联流动。使用LiBr和水的溶液作为干燥剂,在8摄氏度至20摄氏度的不同进口冷却水温度下对系统进行了测试。观测到的平均总空气冷却速率在8.4 kW至19.7 kW之间,而冷却水温度较低则可获得更高的冷却速率。该系统能够提供高达8.8 kW的高感测冷却速率。冷却水温度影响了明显的冷却,但对潜在的冷却速度没有明显的影响。入口空气湿度已显示出对潜在冷却速率的影响,较高的湿度导致较高的潜在冷却速率。系统的能耗低,平均性能热系数(COP)为0.58,电气COP为4.7。在TRNSYS中开发了一个可变效率模型,并被证明在预测空气冷却方面是准确的,但是需要进一步的实验工作来改善热能消耗模型。该模型的模块化设计理念允许轻松更改设计(例如,级数,流体流动路径,运行条件​​等),从而使将来的工作能够在完成进一步的实验后改进蓄热室模型。 (C)2016 Elsevier Ltd.保留所有权利。

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