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ANALYTICAL THERMAL ANALYSIS OF SOLAR CHIMNEY POWER PLANT

机译:太阳能烟囱电厂的解析热分析

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An analytical model and a thermodynamics study of the steady airflow inside a solar chimney are performed in this paper. A simplified Bernoulli equation combined with fluid dynamics and ideal gas equation are modeled and solved using EES solver to predict the performance of a solar chimney power plant. The analytical model is validated against an experimental and numerical data available in the literature. The developed analytical model is used to evaluate the effect of geometric parameters on the solar plant power generation. The analysis is showing that the height and diameter of the tower are the most important physical variables for the solar chimney design. The collector area has minimal effect on second-law efficiency but strong effect on harvested energy. The second law efficiency has non-monotonic relation with the turbine head.
机译:本文对太阳烟囱内部的稳定气流进行了解析模型和热力学研究。使用EES求解器对简化的Bernoulli方程与流体动力学和理想气体方程相结合进行建模和求解,以预测太阳能烟囱发电厂的性能。根据文献中提供的实验数据和数值数据对分析模型进行了验证。开发的分析模型用于评估几何参数对太阳能发电的影响。分析表明,塔的高度和直径是太阳能烟囱设计最重要的物理变量。收集器区域对第二律效率的影响最小,但对收集的能量的影响却很大。第二定律效率与涡轮机头具有非单调关系。

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