太阳能辅助液体干燥剂冷却系统的实验分析

Tejomurthi Pinjala
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引用次数: 0

摘要

除湿机是液体干燥机空调系统中最重要的装置,本文实验分析了以Li Cl-H2O作为干燥剂的太阳能辅助液体干燥剂冷却系统(SALDCS)。一种有能力的太阳能和冷却技术是通过使用液体干燥剂系统,在任何地方,通过与干燥剂直接接触直接从方法空气中吸收湿度,然后通过太阳能热水或空气再生干燥剂。太阳能辅助干燥剂除湿系统运行工况为可变工况,空气流量(0.05 ~ 0.11 kg/sec)、干燥剂浓度(30% ~ 40%)、干燥剂温度(最高40oC)。实验验证了除湿机的有效性,结果表明:除湿机的有效性随空气流量的增加而降低;干燥剂的温度,随着干燥剂浓度的增加,同样的过程中采用中间冷却器(间接蒸发冷却器)可以观察到更好的干空气冷却速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Analysis of Solar Assisted Liquid Desiccant Cooling System
Dehumidifier is that the most vital unit in liquid drier air conditioning system, this paper experimental analysis of solar assisted liquid desiccant cooling system (SALDCS) by Li Cl-H2O as a desiccant. A capable solar energy and cooling technique is through the employment of a liquid drying agent system, wherever humidness is absorbed directly from the method air by direct contact with the drying agent, the desiccant is then regenerated by solar hot water or air. The solar assisted desiccant dehumidifier system is operated variable operating conditions, air flow rate (0.05 to 0.11 kg/sec), desiccant concentration (30% to 40%) and desiccant temperature (maximum 40oC). Effectiveness of dehumidifier verified by experimentally, it results effectiveness decreased by the air flow rate & desiccant temperature, increased by desiccant concentration, the same process done with inter cooler (Indirect evaporative cooler) better dry-air cooling rate observed.
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