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首页> 外文期刊>Science and Technology for the Built Environment >Study on desiccant solution control strategies for efficient liquid desiccant air conditioning system control performance
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Study on desiccant solution control strategies for efficient liquid desiccant air conditioning system control performance

机译:高效液体干燥空调系统控制性能的干燥剂溶液控制策略研究

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摘要

Frequent change in ambient conditions requires precise control of the desiccant solution operating parameters to suit the required conditioned space load. Either of the two control strategies shall be adopted for this, which are the dehumidifier solution inlet temperature (DSIT) control strategy and the dehumidifier solution inlet mass flow rate (DSIM) control strategy. This article aims to study the efficient control strategy selection approach for a specific air conditioning application since it leads to energy savings as well as thermal comfort. Initially, the optimum desiccant mass flow rate will be found for the liquid desiccant air conditioning system at peak ambient conditions. And the effect of the control strategies on system performance has been analytically investigated at different ambient conditions. A significant reduction in the solution heat addition rate has been observed with both control strategies with the addition of an air-solution heat exchanger. It has also been seen that the required chiller load is nearly same with both control strategies but a little drop (3%-14.5% variation) was observed with the DSIT strategy at low ambient conditions. However, a considerable drop in solution pumping power due to the significant reduction in solution mass flow rate and its pressure drop with the DSIM strategy suggests that it is an energy-efficient control strategy.
机译:频繁变化环境条件需要精确控制干燥剂溶液操作参数以适应所需的条件空间负载。应采用两种控制策略中的任一种,这是除湿器溶液入口温度(DSIT)控制策略和除湿器溶液入口质量流量(DSIM)控制策略。本文旨在研究特定空调应用的有效控制策略选择方法,因为它导致节能以及热舒适度。最初,在峰值环境条件下,将找到最佳干燥剂质量流量。并在不同的环境条件下分析了对系统性能对系统性能的影响。通过添加空气溶液热交换器,已经观察到溶液释放速率显着降低。还有人看到所需的冷却器负荷与控制策略几乎相同,但在低环境条件下,用DSIT策略观察到一点下降(3%-14.5%)。然而,由于溶液质量流速显着降低及其与DSIM策略的压降,溶液泵浦功率的相当大的下降表明它是一种节能控制策略。

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