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CFD analysis for solar chimney power plants

机译:太阳能烟囱发电厂的CFD分析

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Solar chimney power plants are investigated numerically using ANSYS Fluent and an in-house developed Computational Fluid Dynamics (CFD) code. Analytical scaling laws are verified by considering a large range of scales with tower heights between 1 m (sub-scale laboratory model) and 1000 m (largest envisioned plant). A model with approximately 6 m tower height is currently under construction at the University of Arizona. Detailed time-dependent high-resolution simulations of the flow in the collector and chimney of the model provide detailed insight into the fluid dynamics and heat transfer mechanisms. Both transversal and longitudinal convection rolls are identified in the collector, indicating the presence of a Rayleigh-Benard-Poiseuille instability. Local separation is observed near the chimney inflow. The flow inside the chimney is fully turbulent.
机译:使用ANSYS Fluent和内部开发的计算流体动力学(CFD)代码对太阳能烟囱发电厂进行了数值研究。通过考虑塔架高度在1 m(子规模实验室模型)和1000 m(最大设想的工厂)之间的大比例尺来验证分析定标律。亚利桑那大学目前正在建造一个塔高约为6 m的模型。模型的收集器和烟囱中流动的详细时间相关的高分辨率模拟提供了对流体动力学和传热机制的详细了解。横向对流辊和纵向对流辊在收集器中均被识别出,表明存在瑞利-贝纳德-波塞伊勒不稳定性。在烟囱入口附近观察到局部分离。烟囱内部的流动完全湍流。

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