Numerical simulation of the effect of chimney configuration on the performance of a solar chimney power plant

Author(s):  
Mazdak Arzpeyma ◽  
Saad Mekhilef ◽  
Kazi Md. Salim Newaz ◽  
Ben Horan ◽  
Mehdi Seyedmahmoudian ◽  
...  
2008 ◽  
Vol 33 (5) ◽  
pp. 897-905 ◽  
Author(s):  
Ming Tingzhen ◽  
Liu Wei ◽  
Xu Guoling ◽  
Xiong Yanbin ◽  
Guan Xuhu ◽  
...  

2018 ◽  
Vol 126 ◽  
pp. 1093-1101 ◽  
Author(s):  
Rayan Rabehi ◽  
Abla Chaker ◽  
Tingzhen Ming ◽  
Tingrui Gong

Author(s):  
Mazdak Arzpeyma ◽  
Saad Mekhilef ◽  
Kazi Md. Salim Newaz ◽  
Ben Horan ◽  
Mehdi Seyedmahmoudian ◽  
...  

2011 ◽  
Vol 704-705 ◽  
pp. 535-540 ◽  
Author(s):  
Yan Zhou ◽  
Xiao Hui Liu ◽  
Qing Ling Li

A new kind of solar chimney power plant system combining chimney and heat collector was designed. Paraffin was chosen as the material of energy storage layer and the unsteady conjugate numerical simulation of the system was done by Fluent software. The operation condition of the system was simulated when the solar radiation value was changed with time according to the actual situation. Simulation results showed that: with the increase of solar radiation, flow velocity of the air and the maximum output power increased. At twelve o'clock, the air velocity could reach 1.24 m/s and output power was 122W. Due to the energy storage effect of phase change materials, the system had output power of 1.3W at night. Moreover because of the continuous work of the heat storage layer, in the same condition of solar radiation, the air velocity and maximum output power increased with the system operation days extended.


2013 ◽  
Vol 2013 ◽  
pp. 1-8 ◽  
Author(s):  
Fei Cao ◽  
Huashan Li ◽  
Yang Zhang ◽  
Liang Zhao

The solar chimney power plant (SCPP) generates updraft wind through the green house effect. In this paper, the performances of two SCPP styles, that is, the conventional solar chimney power plant (CSCPP) and the sloped solar chimney power plant (SSCPP), are compared through a numerical simulation. A simplified Computational Fluid Dynamics (CFD) model is built to predict the performances of the SCPP. The model is validated through a comparison with the reported results from the Manzanares prototype. The annual performances of the CSCPP and the SSCPP are compared by taking Lanzhou as a case study. Numerical results indicate that the SSCPP holds a higher efficiency and generates smoother power than those of the CSCPP, and the effective pressure in the SSCPP is relevant to both the chimney and the collector heights.


Author(s):  
Sellami Ali ◽  
Benlahcene Djaouida ◽  
Abdelmoumène Hakim Benmachiche ◽  
Zeroual Aouachria

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