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Effects of varying secondary channel widths on flow boiling heat transfer and pressure characteristics in oblique-finned microchannels

机译:副翅片通道宽度的变化对翅片微通道内流动沸腾传热和压力特性的影响

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The oblique-finned structure has been proven to exhibit significant enhancements in heat transfer in both single-phase and two-phase modes of operation coupled with slight increment in pressure drop. These enhancements come with the mitigation of two-phase flow instability compared to the conventional straight-finned microchannels, which encourages further parametric studies on the fin geometry. In the present work, flow boiling experiments are conducted in oblique-finned microchannels using the FC-72 dielectric fluid with varying secondary channel widths to investigate its effects on two-phase heat transfer, pressure drop and flow boiling instabilities. Three different secondary channel widths of 0.15 mm, 0.30 mm and 0.45 mm are tested with mass fluxes ranging from 197 kg/m~2 s to 394 kg/m~2 s, and effective heat fluxes from 14.9 W/cm~2 to 70.2 W/cm~2 with the aid of high-speed visualisations. From the experiments and flow visualisations, it is found that increasing the width of the secondary channels has adverse effect on heat transfer performance and critical heat flux limit due to the inability of the microchannels to suppress flow boiling instabilities. Pressure drop penalty of the larger secondary channel configurations are higher as a result of greater amount of flow diversion, which amplifies flow migration from the draining edge to the filling edge of the oblique-finned array.
机译:倾斜翅片结构已被证明在单相和两相运行模式下均显着增强了传热,同时压降略有增加。与传统的直翅式微通道相比,这些增强功能可减轻两相流动的不稳定性,这鼓励了对翅片几何形状的进一步参数研究。在目前的工作中,使用具有不同次级通道宽度的FC-72介电液在倾斜翅片微通道中进行沸腾实验,以研究其对两相传热,压降和沸腾不稳定性的影响。测试了三种不同的辅助通道宽度0.15 mm,0.30 mm和0.45 mm,质量通量范围为197 kg / m〜2 s至394 kg / m〜2 s,有效热通量范围为14.9 W / cm〜2至70.2 W / cm〜2借助高速可视化。从实验和流动可视化中发现,由于微通道无法抑制流动沸腾的不稳定性,增加辅助通道的宽度会对传热性能和临界热通量限制产生不利影响。较大的辅助通道配置会导致较大的分流,从而导致较高的压降损失,这会放大从倾斜翅片阵列的排放边缘到填充边缘的流动迁移。

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