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Field Synergy Analysis of Thermal Storage Effect of Solar Energy Storage Tank

机译:太阳能储罐热蓄能池的现场协同分析

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The internal structure of solar energy storage water tank partition design was carried out in this paper. The energy storage tank with different internal structure had been simulated to analysis convective heat transfer mechanism in the water tank by using CFD method. The temperature stratification mechanism of water tank had been deeply analysed to improve the availability of storage tank as the goal based on the heat transfer and flow field synergy theory. The calculation results showed that the partition plate in the water tank could obviously improve the effect of hot and cold stratification of the water tank, so that a good effect of cold and hot stratification from left to right could be achieved; The influence of flow field on temperature field had been studied by analyzing the degree of synergy between velocity vector and temperature gradient vector, The flow resistance, drag reduction mechanism and influencing factors in the water tank were studied by analyzing the synergy between the velocity vector and the pressure gradient vector; Through the adjustment of internal structure and the change of water flow and heat transfer and pressure gradient direction, that was to change the angle between the velocity and the temperature gradient and the velocity and pressure gradient, and It could effectively improve the energy storage and delamination effect of the water tank; and provided a theoretical basis for the future design of efficient solar energy storage tank with low flow resistance.
机译:本文进行了太阳能储存水箱分区设计的内部结构。已经模拟了具有不同内部结构的能量储罐,以通过使用CFD方法分析水箱中的对流传热机制。储水箱的温度分层机制已经深入分析,以改善储罐的可用性作为基于传热和流场协同理论的目标。计算结果表明,水箱中的隔板明显提高水箱热分层的效果,从而可以实现从左到右的冷和热分层的良好效果;通过分析速度向量和温度梯度载体之间的协同程度,通过分析速度向量和速度矢量的协同作用来研究流域对温度场对温度场的影响。通过分析速度向量和速度载体之间的协同作用,研究了水箱中的流动阻力,减阻机构和影响因子压力梯度载体;通过调节内部结构和水流的变化和传热和压力梯度方向,即改变速度和温度梯度之间的角度和速度和压力梯度,可以有效地改善能量存储和分层水箱的影响;为未来设计具有低流动性的高效太阳能储能罐设计提供了理论依据。

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