首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Crystallization as a limit to develop solar air-cooled LiBr-H2O absorption systems using low-grade heat
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Crystallization as a limit to develop solar air-cooled LiBr-H2O absorption systems using low-grade heat

机译:结晶限制了利用低热量开发太阳能风冷的LiBr-H2O吸收系统

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摘要

In the present work the use of low-temperature solar heat is studied to produce cooling at 5degreesC, using a double-stage LiBr-H2O air-cooled absorption cycle. A solar plant, consisting of flat plate collectors feeding the generators of the absorption machine, has been modeled. Operating conditions of the double-stage absorption machine, integrated in the solar plant without crystallization problems for condensation temperatures up to 53degreesC, are obtained. Results show that about 80degreesC of generation temperature are required in the absorption machine when condensation temperature reach 50degreesC, obtaining a COP equal to 0.38 in the theoretical cycle.A comparative study respect to single-stage absorption cycles is performed. Efficiency gain of the double-stage solar absorption system, over the single-stage one, will increase with higher condensation temperatures and lower solar radiation values. Single-stage cycles cannot operate for condensation temperatures higher than 40degreesC using heat from flat plate collectors. For higher condensation temperatures (45degreesC) the generation temperatures required (105degreesC) are very high and crystallization occurs. Condensation temperatures able to use in double-stage cycles may be increased until 53degreesC using heat from flat plate collectors without reaching crystallization. (C) 2003 Elsevier B.V. All rights reserved.
机译:在目前的工作中,研究了使用低温太阳能热利用双级LiBr-H2O空冷吸收循环在5℃下产生冷却的问题。对一个由平板集热器组成的太阳能发电厂进行了建模,该集热器为吸收机的发电机供电。获得了集成在太阳能装置中的双级吸收机的运行条件,对于高达53摄氏度的冷凝温度没有结晶问题。结果表明,当冷凝温度达到50°C时,吸收机需要约80°C的产生温度,理论循环中的COP等于0.38。对单级吸收循环进行了比较研究。与单级太阳能吸收系统相比,双级太阳能吸收系统的效率增益将随着冷凝温度的升高和太阳辐射值的降低而增加。使用来自平板集热器的热量,冷凝温度高于40摄氏度时,单级循环无法运行。对于更高的冷凝温度(45摄氏度),所需的生成温度(105摄氏度)非常高,并且会发生结晶。可以使用平板收集器产生的热量将能够在二级循环中使用的冷凝温度提高到53摄氏度,而不会达到结晶状态。 (C)2003 Elsevier B.V.保留所有权利。

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