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Simulation of a collector using waste heat energy in a solar chimney power plant system

机译:太阳烟囱发电厂系统中利用废热能收集器的仿真

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Rare techniques have been proposed for twenty four hour operation of a solar chimney power plant (SCPP). In this study, another technique is suggested by utilizing waste heat energy in the form of flue gases flow in conduits within the solar collector. The process of the heat and fluid flow within the collector were simulated using ANSYS software. The predicted performance and enhancement of the collector are presented and discussed. The results show a significant increase in the overall performance of the solar chimney power plant. At 1000 W/m~2 solar radiation, the collector temperature rise is from 19 to 23 K, the updraft velocity is increased from 15.6 m/s to 17.1 m/s, the power output increased from 50.1 kW to 66.1 kW and the efficiency is improved from 0.116% to 0.144%. Although the technique contributes to the performance enhancement of the SCPP, it also contributes to the reduction of global warming by reduction of the exhausted flue gases temperature.
机译:已经提出了用于太阳能烟囱发电厂(SCPP)二十四小时运行的罕见技术。在这项研究中,提出了另一种技术,即利用余热能以烟气的形式在太阳能集热器内的导管中流动。使用ANSYS软件模拟了集热器内的热量和流体流动过程。介绍并讨论了收集器的预期性能和增强。结果表明,太阳能烟囱发电厂的整体性能有了显着提高。在太阳辐射为1000 W / m〜2时,集热器温度从19 K升高到23 K,上升气流速度从15.6 m / s增加到17.1 m / s,功率输出从50.1 kW增加到66.1 kW,效率提高了。从0.116%提高到0.144%。尽管该技术有助于提高SCPP的性能,但它还可以通过降低废气温度来降低全球变暖。

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