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Modeling and characteristics analysis of hybrid cooling-tower-solar-chimney system

机译:混合冷却塔-太阳能-烟囱系统的建模与特性分析

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The hybrid cooling-tower-solar-chimney system (HCTSC), combining solar chimney with natural draft dry cooling tower, generates electricity and dissipates waste heat for the coupled geothermal power plant simultaneously. Based on a developed 3-D model, performance comparisons between the HCTSC system, solar chimney and natural draft dry cooling tower were performed in terms of power output of turbine and heat dissipation capacity. Results show that compared to the traditional solar chimney with similar geometric dimensions, HCTSC system can achieve over 20 times increase in the power output of turbine. However, this huge jump in power output is at the expense of heat dissipation capacity, which may lead to the malfunction of the coupled thermal power plant. By increasing the heat transfer area of the heat exchanger, the HCTSC system can manage to recover its heat dissipation capacity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:混合式冷却塔-太阳能-烟囱系统(HCTSC)将太阳能烟囱与自然通风的干式冷却塔结合在一起,可发电并同时为耦合的地热发电厂消散废热。基于已开发的3-D模型,根据涡轮机的功率输出和散热能力,对HCTSC系统,太阳能烟囱和自然通风干式冷却塔进行了性能比较。结果表明,与具有相似几何尺寸的传统太阳能烟囱相比,HCTSC系统可将涡轮机的功率输出提高20倍以上。但是,这种巨大的功率输出是以散热能力为代价的,这可能导致耦合热电厂的故障。通过增加热交换器的传热面积,HCTSC系统可以设法恢复其散热能力。 (C)2015 Elsevier Ltd.保留所有权利。

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