Article ID Journal Published Year Pages File Type
1550201 Solar Energy 2013 7 Pages PDF
Abstract

•A theoretical approach is developed to evaluate optimal pressure ratio.•Comprehensive 3D numerical simulation is conducted to verify the theoretical model.•Optimal pressure ratio mainly varied with a change in intensity of solar radiation.

In a solar chimney power plant, only a fraction of the available total pressure difference can be used to run the turbine to generate electrical power. The optimal ratio of the turbine pressure drop to the available total pressure difference in a solar chimney system is investigated using theoretical analysis and 3D numerical simulations. The values found in the literature for the optimal ratio vary between 2/3 and 0.97. In this study, however, the optimal ratio was found to vary with the intensity of solar radiation, and to be around 0.9 for the Spanish prototype. In addition, the optimal ratios obtained from the analytical approach are close to those from the numerical simulation and their differences are mainly caused by the neglect of aerodynamic losses associated with skin friction, flow separation, and secondary flow in the theoretical analysis. This study may be useful for the preliminary estimation of power plant performance and the power-regulating strategy option for solar chimney turbines.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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