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Comparison of convective heat transfer for Kagome and tetrahedral truss-cored lattice sandwich panels

机译:Kagome和四面体桁架芯格子夹芯板对流换热的比较

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摘要

The aim of this paper is to make a thorough comparison between Kagome and tetrahedral truss-cored lattices both experimentally and numerically. Two titanium sandwich panels –one cored with the Kagome lattice and the other with the tetrahedral lattice –are manufactured by 3D printing technology. Comparisons of the thermal insulation, the inner flow pattern and the heat transfer between the two sandwich panels are completed subsequently according to the results from forced convective experiments and numerical simulation. Within the Reynolds number range of interest for this study, the Kagome lattice exhibits excellent heat dissipation compared with the tetrahedral lattice. In particular, when the cooling air flows in the direction OB of the two sandwich panels, the Kagome lattice provides an 8~37% higher overall Nusselt number for the sandwich panel compared to the tetrahedral lattice. The superiority of the Kagome lattice comes from a unique configuration in which the centre vertex acting as the vortex generator not only disturbs the primary flow but also induces more serious flow stagnation and separation. The complex fluid flow behaviours enhance heat transfer on both the endwalls and the trusses while causing a pressure drop that is almost two times higher than that of the tetrahedral lattice in the flow direction OB.
机译:本文的目的是在实验和数值上对Kagome和四面体桁架芯晶格进行全面比较。通过3D打印技术制造了两块钛合金夹心板,一块夹在Kagome晶格上,另一块夹在四面体格上。随后,根据对流强迫实验和数值模拟的结果,完成了两个夹层板之间的绝热,内部流动模式和传热的比较。在本研究的雷诺数范围内,与四面体晶格相比,Kagome晶格具有出色的散热性能。特别是,当冷却空气沿两个夹心板的OB方向流动时,与四面体栅格相比,Kagome晶格为夹心板提供了8〜37%的总Nusselt值。 Kagome晶格的优越性来自于独特的配置,在该配置中,充当涡旋发生器的中心顶点不仅干扰了主流动,而且引起了更严重的流动停滞和分离。复杂的流体流动行为增强了端壁和桁架上的热传递,同时在流向OB上引起的压降几乎是四面体网格的压降的两倍。

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