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Investigation of the effects of ambient temperature and dimensional parameters on the performance of solar chimney power plants

机译:研究环境温度和尺寸参数对太阳能烟囱发电厂性能的影响

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摘要

In this study, the influence of ambient temperature is investigated on the performance of solar chimney. Dimensional analysis is performed to find the dimensionless variables for the purpose of predicting the solar chimney performance. A mathematical model was developed and validated with the experimental data of an experimental pilot. By using this model, it is shown that the ambient temperature has an adverse effect on the SCPP output. For this purpose, a solar chimney with 7.4 m chimney height, 0.6 m chimney diameter, 8 m collector diameter, and 0.2 m mean collector height was built. By using the Buckingham Pi theory, a dimensionless variable was obtained, and its value was correlated using the experimental data. The investigation of the system performance using this dimensionless variable shows that the output power increases with a third-order polynomial relation through increasing the size of SCPP, and with a linear relation through increasing the solar insolation. In the other word, when the size of the system and solar insolation increase, the output power of the solar chimney rises. The variation of the air velocity versus daytime shows maximum area from 11:00 a.m. to 1:00 p.m.
机译:在这项研究中,研究了环境温度对太阳能烟囱性能的影响。执行尺寸分析以找到无量纲变量,以预测太阳能烟囱的性能。开发了数学模型,并使用实验飞行员的实验数据进行了验证。通过使用该模型,表明环境温度对SCPP输出有不利影响。为此,建造了具有7.4 m烟囱高度,0.6 m烟囱直径,8 m收集器直径和0.2 m平均收集器高度的太阳能烟囱。通过使用白金汉Pi理论,获得了无量纲变量,并将其值与实验数据相关联。使用该无量纲变量对系统性能进行的研究表明,输出功率通过增加SCPP的大小以三阶多项式关系增加,而通过增加日照强度以线性关系增加。换句话说,当系统的尺寸和日照增加时,太阳烟囱的输出功率会增加。空气速度相对于白天的变化显示了从上午11:00到下午1:00的最大面积。

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