对包含蓄热层的太阳能热气流发电系统的传热与流动特性进行非稳态耦合数值模拟.建立了集热棚、烟囱以及蓄热层内部传热与流动数学模型.分析了不同蓄热介质的太阳辐射响应特性对系统昼夜发电峰谷差的影响,计算结果表明:采用热容较高的土壤作为蓄热介质可以有效降低昼夜平均温度的峰谷差,从而有效调整系统的昼夜发电峰谷差;蓄热层表面温度越高,系统不可逆性越大,能量损失和可用能损失越大;蓄热层导热系数越大,蓄热层表面温度越小,烟囱出口平均温度和平均速度越高,通过烟囱出口的能量损失越大.
参考文献
[1] | Jorg Schlaich;Rudolf Bergermann;Wolfgang Schiel;Gerhard Weinrebe .Design of Commercial Solar Updraft Tower Systems—Utilization of Solar Induced Convective Flows for Power Generation[J].Journal of Solar Energy Engineering,2005(1):117-124. |
[2] | Bernardes M A;Vob A;Weinrebe G .Thermal and Technical Analyzes of Solar Chimneys[J].SOLAR ENERGY,2003,75:511-524. |
[3] | 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. |
[4] | 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. |
[5] | Henry Pastohr;Oliver Kornadt;Klaus Gurlebeck .Numerical and analytical calculations of the temperature and flow field in the upwind power plant[J].International journal of energy research,2004(6):495-510. |
[6] | Haaf H;Friedrich K;Mayer G et al.Solar Chimneys[J].International Journal of Solar Energy,1984,2:141-161. |
[7] | 陶文铨.数值传热学[M].西安:西安交通大学出版社,2001 |
[8] | Sung Jin Kim .Convective Heat Transfer in Porous and Overlying Fluid Layers Heated from Below[J].International Journal of Heat and Mass Transfer,1996,39(02):319-329. |
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