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Performance evaluation of hybrid solar chimney for uninterrupted power generation

机译:混合太阳能烟囱不间断发电的性能评估

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Solar chimneys have the drawback of being unproductive at night This study proposed a hybrid solar chimney integrated with an external heat source to complement solar energy for uninterrupted power generation. Flue-gas channels were utilized to supply air into the collector passage. The hybrid arrangement was investigated experimentally and numerically. An experimental model comprising a 6 m-diameter solar air collector, 6.65 m-height chimney, and four flue thermal channels was designed and fabricated. The hybrid system was further simulated using ANSYS-Fluent. The numerical procedure was validated by comparing with experimental measurements for a conventional solar chimney with mean differences of 8.7% and 7.8% in air flow velocity and air temperature rise, respectively. Results showed that the hybrid approach considerably enhanced the plant performance. The insertion of flue channels, even with no flue-gas flow, enhanced the velocity and temperature by 6.87% and 6.3%, respectively measured at the chimney base. Simulation results with 0.0015 kg/s at 116 degrees C flue gas in the thermal channels demonstrated that the air-mass flow rate and collector efficiency enhanced by 12.0%, and 64.0%, respectively. This study proved that the proposed technique can resolve the setback of night operation of solar chimney power plants and enable 24/7 power production. (C) 2018 Elsevier Ltd. All rights reserved.
机译:太阳能烟囱的缺点​​是夜间无法生产。这项研究提出了一种混合太阳能烟囱,该太阳能烟囱与外部热源集成在一起,可以补充太阳能以实现不间断发电。利用烟气通道将空气供应到收集器通道中。混合布置进行了实验和数值研究。设计并制作了一个实验模型,该模型包括一个直径为6 m的太阳能集热器,6.65 m高的烟囱和四个烟道热通道。使用ANSYS-Fluent对混合系统进行了进一步仿真。通过与常规太阳能烟囱的实验测量值进行比较,验证了数值程序的有效性,传统太阳能烟囱的空气流速和气温升高分别分别为8.7%和7.8%。结果表明,混合方法大大提高了植物的性能。即使在没有烟气流的情况下,烟道的插入也分别使在烟囱底部测得的速度和温度提高了6.87%和6.3%。在热通道中以116摄氏度的烟气以0.0015 kg / s进行的模拟结果表明,空气质量流量和收集器效率分别提高了12.0%和64.0%。这项研究证明,所提出的技术可以解决太阳能烟囱发电厂夜间运行的挫折,实现24/7全天候发电。 (C)2018 Elsevier Ltd.保留所有权利。

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