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对从太阳能热烟囱系统抽象出的流动和换热模型进行了数值模拟.数值结果表明,随着底部加热热流密度的增加,系统内的空气流量增加;当集热棚高度变化时,流经系统的空气流量和系统出力存在最大值;在本文计算采用的几何和物理条件下,入口高度约为20 m时系统的空气流量取得最大值;系统内部的压力差随着集热棚高度的增加而减小.

A numerical study has been carried out on the flow in a two-dimensional solar chimney with fixed heat flux on its bottom.The numerical results indicated that the mass flux is an increasing function of the heat flux at the bottom.The mass flux through the system and the output of the system each has a maximum as the entrance height of the collector varying.The entrance height i8 about 20 m when the mass flux reaches its maximum in calculated condition of this study.Driving force of the system is a decreasing function of the entrance height of the collector.

参考文献

[1] Schlaigh J.The Solar Chimney[M].Edition Axel Menges,Stuttgart,Germany,1995
[2] Haaf W;priedrich K;Mayr G et al.Solar Chimneys Part Ⅰ:Principle and Construction of the Pilot Plant in Manzanares[J].International Journal of Solar Energy,1983,2(01):3-20.
[3] Haaf W .Solar Chimneys Part Ⅱ:Preliminary Test Results From the Manzanares Pilot Plant[J].International Journal of Solar Energy,1984,2(02):141-161.
[4] Pasumarthi N.;Sherif SA. .Experimental and theoretical performance of a demonstration solar chimney model - Part I: Mathematical model development[J].International journal of energy research,1998(3):277-288.
[5] Pasumarthi N.;Sherif SA. .Experimental and theoretical performance of a demonstration solar chimney model - Part II: Experimental and theoretical results and economic analysis[J].International journal of energy research,1998(5):443-461.
[6] 刘伟,明廷臻,杨昆,潘垣.MW级太阳能热气流电站传热和流动特性研究[J].华中科技大学学报(自然科学版),2005(08):5-7.
[7] M. Tingzhen;L. Wei;X. Guoliang .Analytical and numerical investigation of the solar chimney power plant systems[J].International journal of energy research,2006(11):861-873.
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