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Geometry optimization of double pass solar air heater with helical flow path

机译:螺旋流动路径双通太阳能空气加热器几何优化

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摘要

Solar air heaters (SAH) have been widely studied due to their extensive applications in solar energy extraction. This research is in line with the previous study of the authors of this article in which the energy efficiency and heat transfer performance of a double pass solar air heater with helical flow path (HFP) were experimentally and numerically explored in a triangular cross-section channel. Here, the effect of different geometric parameters of this SAH on heat transfer performance is numerically investigated. The optimization procedure was also carried out by the differential evolution (DE). The results of this study were developed by referring to the grid independency and validation of the previous work of the authors. Finally, the effects of triangular section angles and dimensions and the location of the entrance section of each channel were investigated and optimized. The results indicated that optimized geometry resulted in a considerably higher thermo-hydraulic performance as compared with reference geometry for all Reynolds numbers which showed a minimum increment of t 16.5% upon optimization. The inactive vortices produced at the edge of entrance flow passage were reduced in each channel due to optimization which also declined the pressure drop.
机译:由于太阳能提取的广泛应用,太阳能空气加热器(SAH)已被广泛研究。本研究符合上一篇关于本文作者的研究,其中双通太阳能加热器具有螺旋流路(HFP)的能效和传热性能,在三角形横截面通道中进行实验和数值探索。这里,在数值上研究了该SAH对传热性能的不同几何参数的影响。优化过程也由差分进化(DE)进行。本研究的结果是通过参考网格独立性和验证提交人的工作。最后,研究了三角形截面角度和尺寸的影响以及每个通道的入口部分的位置和优化。结果表明,与所有雷诺数的参考几何形状相比,优化的几何形状导致具有相当高的热水液性能,其在优化时显示出最小增量T 16.5%。由于优化,在每个通道中减少了在入口流动通道边缘处产生的非活动涡流,这也降低了压降。

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