A Solar Chimney for renewable energy production: Thermo-fluid dynamic optimization by CFD analyses

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Abstract

This paper analyzes the performance of a solar tower designed for renewable energy production. The Solar Chimney Power Plant (SCPP) involves technology that converts solar energy by means of three basic components: a large circular solar collector, a high tower in the center of the collector and a turbine generator inside the chimney. SCPPs are characterized by long term operational life, low maintenance costs, zero use of fuels, no use of water and no emissions of greenhouse gases. The main problem of this technology is the low energy global conversion coefficient due to the presence of four conversions: solar radiation > thermal energy > kinetic energy > mechanical energy > electric energy. This paper defines its starting point from the well known power plant of Manzanares in order to calibrate a numerical model based on finite volumes. Following that, a solar tower with reduced dimensions was designed and an analysis on various geometric parameters was conducted: on the inlet section, on the collector slope, and on the fillet radius among the SUPP sections. Once the optimal solution was identified, a curved deflectors able to induce a flow swirl along the vertical tower axis was designed.

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Montelpare, S., D’Alessandro, V., Zoppi, A., & Costanzo, E. (2017). A Solar Chimney for renewable energy production: Thermo-fluid dynamic optimization by CFD analyses. In Journal of Physics: Conference Series (Vol. 923). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/923/1/012047

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