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Impact of the solution channel thickness while investigating the effect of membrane characteristics and operating conditions on the performance of water-LiBr membrane-based absorbers

机译:在研究膜特性和操作条件对水基LiBr膜吸收剂性能的影响时,溶液通道厚度的影响

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In this study, a numerical analysis is performed to investigate the effect of membrane contactor characteristics and operating conditions on the absorption performance in plate-and-frame membrane-based absorbers used in water-LiBr absorption cooling systems. This paper critically evaluates the impact of the solution channel thickness while investigating the effect of membrane characteristics. Results show that the effect of membrane characteristics is different in the case of different solution channel thicknesses. For instance, increasing the membrane mean pore size from 0.25 mu m to 1 mu m enhances the absorption rate by 75% in the case of a 0.1 mm solution channel, whereas in a 0.5 mm solution channel the absorption rate increases by 40%. In addition, a parametric study is performed to study the effect of solution mass flow rate, vapour pressure, solution inlet concentration and cooling water temperature on the absorption performance, taking into consideration different solution channel thicknesses. Results show that a high absorption rate can be achieved in the case of thinner solution channels. Moreover, the percentage change in the absorption rate remains almost the same when the vapour pressure, solution inlet concentration and coolant inlet temperature are varied in the case of different solution channel thicknesses. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,进行了数值分析,以研究膜接触器特性和操作条件对水-溴化锂吸收式冷却系统中使用的板框膜式吸收器的吸收性能的影响。本文在评估膜特性的影响的同时,严格评估了溶液通道厚度的影响。结果表明,在不同溶液通道厚度的情况下,膜特性的影响是不同的。例如,在0.1 mm溶液通道中,将膜平均孔径从0.25μm增加到1μm可使吸收率提高75%,而在0.5 mm溶液通道中,吸收率提高40%。此外,还进行了参数研究,以研究溶液质量流量,蒸气压,溶液入口浓度和冷却水温度对吸收性能的影响,同时考虑了不同的溶液通道厚度。结果表明,在较细的溶液通道中可以实现高吸收率。此外,在不同溶液通道厚度的情况下,当蒸气压,溶液入口浓度和冷却剂入口温度变化时,吸收率的百分比变化几乎保持不变。 (C)2016 Elsevier Ltd.保留所有权利。

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