首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Comparison of the modeling of a solar absorption system for simultaneous cooling and heating operating with an aqueous ternary hydroxide and with water/lithium bromide
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Comparison of the modeling of a solar absorption system for simultaneous cooling and heating operating with an aqueous ternary hydroxide and with water/lithium bromide

机译:三元氢氧化物水溶液和水/溴化锂同时冷却和加热的太阳能吸收系统的模型比较

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This paper compares the theoretical performance of the modeling of a solar absorption system for simultaneous cooling and heating operating with water/lithium bromide, and alternative aqueous ternary hydroxide mixtures. Aqueous ternary hydroxide working fluid consists of sodium, potassium and cesium hydroxides in the proportions 40: 36:24 (NaOH:KOH:CsOH). Plots of Carnot coefficients of performance and enthalpy-based coefficients of performance are shown against the evaporator temperature. The results showed that, in general, the system with the hydroxide mixture may operate with higher coefficients of performance than the system with the lithium bromide mixture. Also it was shown that the system with the hydroxide may operate with a higher range of temperatures. (C) 2001 Published by Elsevier Science BN. [References: 5]
机译:本文比较了利用水/溴化锂和其他三元氢氧化物水溶液同时进行冷却和加热的太阳能吸收系统建模的理论性能。三元氢氧化物水溶液工作液由氢氧化钠,钾和铯组成,比例为40:36:24(NaOH:KOH:CsOH)。显示了卡诺性能系数和基于焓的性能系数与蒸发器温度的关系图。结果表明,通常,使用氢氧化物混合物的系统可能比使用溴化锂混合物的系统具有更高的性能系数。还表明含氢氧化物的体系可以在较高温度范围内操作。 (C)2001年由Elsevier Science BN出版。 [参考:5]

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