首页> 外文期刊>International journal of green energy >EXPERIMENTAL STUDY OF AN OPEN-CYCLE SOLAR COLLECTOR/REGENERATOR USING LIQUID DESICCANT FOR AIR CONDITIONING
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EXPERIMENTAL STUDY OF AN OPEN-CYCLE SOLAR COLLECTOR/REGENERATOR USING LIQUID DESICCANT FOR AIR CONDITIONING

机译:液体干燥剂用于空调的开放式太阳能集热器/蓄热器的试验研究

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摘要

Liquid desiccant has been widely used in various solar energy applications, such as air conditioning and food drying. Especially, in the emerging solar desiccant air conditioning system, the regenerator, where the diluted solution is concentrated, plays an important role. Using the open-cycle solar collectors/regenerators (OR) to concentrate the dilute solution is an effective way to utilize low-grade solar thermal energy to regenerate desiccant solution for air conditioning. The desiccant solution itself is a heat-collecting fluid and the regeneration process could be enhanced in this arrangement. To evaluate its thermal performance, a lab-scale experiment has been conducted using lithium bromide (LiBr) solution. The effects of ambient weather variables (solar radiation, air temperature, relative humidity) and operation conditions (air mass flow rate, solution flow rate, air inlet temperature, solution inlet temperature, and solution concentration) on the solar regeneration parallel flow configurations have been experimentally investigated. To further investigate the heat- and mass-transfer phenomenon inside the solar OR, the heat- and mass-transfer coefficients are calculated based on the experimental data using multi-dimensional optimization method. Unlike those traditional correlations available in the literature, the effects of inlet conditions of the air and solution on the heat- and mass-transfer coefficients are clearly identified. Applying these correlations to the simulation model of the solar OR and comparing the predicted values with the experimental values, the accuracy is satisfactory and can be applied to the further investigation for the thermodynamic performance oftlie solar desiccant air conditioning system.
机译:液体干燥剂已广泛用于各种太阳能应用中,例如空调和食品干燥。特别地,在新兴的太阳能干燥剂空调系统中,稀释溶液被浓缩的再生器起着重要的作用。使用开放式太阳能集热器/蓄热器(OR)来浓缩稀溶液是利用低级太阳能热能再生干燥剂溶液用于空调的有效方法。干燥剂溶液本身是集热流体,在这种布置中可以增强再生过程。为了评估其热性能,已使用溴化锂(LiBr)溶液进行了实验室规模的实验。环境温度变量(太阳辐射,空气温度,相对湿度)和运行条件(空气质量流速,溶液流速,进气温度,溶液入口温度和溶液浓度)对太阳能再生平行流配置的影响经过实验研究。为了进一步研究太阳OR内部的传热和传质现象,使用多维优化方法,根据实验数据计算出传热和传质系数。与文献中可用的那些传统相关性不同,可以清楚地确定空气和溶液的入口条件对传热和传质系数的影响。将这些相关性应用于太阳能OR的仿真模型,并将预测值与实验值进行比较,其准确性是令人满意的,可用于进一步研究除湿空调系统的热力学性能。

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