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Lattice boltzmann simulation for complex flow in a solar wall

机译:太阳能墙内复杂流的格子Bitzzmann模拟

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摘要

In this letter, we present a lattice Boltzmann simulation for complex flow in a solar wall system which includes porous media flow and heat transfer, specifically for solar energy utilization through an unglazed transpired solar air collector (UTC). Besides the lattice Boltzmann equation (LBE) for time evolution of particle distribution function for fluid field, we introduce an analogy, LBE for time evolution of distribution function for temperature. Both temperature fields of fluid (air) and solid (porous media) are modeled. We study the effects of fan velocity, solar radiation intensity, porosity, etc. on the thermal performance of the UTC. In general, our simulation results are in good agreement with what in literature. With the current system setting, both fan velocity and solar radiation intensity have significant effect on the thermal performance of the UTC. However, it is shown that the porosity has negligible effect on the heat collector indicating the current system setting might not be realistic. Further examinations of thermal performance in different UTC systems are ongoing. The results are expected to present in near future.
机译:在这封信中,我们介绍了一个格子Boltzmann模拟,用于模拟太阳能墙系统中的复杂流动,其中包括多孔介质的流动和热传递,特别是用于通过无釉蒸发太阳集热器(UTC)进行太阳能利用的情况。除了用于流场的粒子分布函数的时间演化的格子Boltzmann方程(LBE)之外,我们还引入一个类似的方法,即用于温度分布函数的时间演化的LBE。对流体(空气)和固体(多孔介质)的温度场都进行了建模。我们研究了风扇速度,太阳辐射强度,孔隙率等对UTC热性能的影响。通常,我们的仿真结果与文献中的结果非常吻合。在当前系统设置下,风扇速度和太阳辐射强度都会对UTC的热性能产生重大影响。但是,表明孔隙率对集热器的影响可忽略不计,这表明当前的系统设置可能不切实际。正在对不同UTC系统中的热性能进行进一步检查。预期结果将在不久的将来呈现。

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