首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Influence of 0 degrees helix angle micro fins on flow and heat transfer of R32 evaporating in a horizontal mini multichannel flat tube
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Influence of 0 degrees helix angle micro fins on flow and heat transfer of R32 evaporating in a horizontal mini multichannel flat tube

机译:0度螺旋角微翅片对水平微型多通道扁管中蒸发的R32的流动和传热的影响

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摘要

The heat transfer and pressure drop characteristics of R32 were experimentally investigated for flow boiling in a mini multichannel flat tube with 0 degrees helix angle micro fins that are aligned with the flow direction. The micro-fin tube has an inner diameter of 1.7 mm with thirteen 0.16 mm high fins. The working conditions were mass fluxes of 100-400 kg m(-2) s(-1), heat fluxes of 10-40 kW m(-2) and saturation temperatures of 10-20 degrees C. The results show that in the micro-fin tube with 0 degrees helix angle, the flow boiling heat transfer coefficient of R32 increases with increasing mass flux, heat flux and saturation temperature. The heat transfer is affected by two dryout points, but the fins delay the totally dryout point. The pressure drop increases with increasing mass flux and heat flux or decreasing saturation temperature. The critical vapor qualities for the pressure drop in the micro-fin tube are lower than in the smooth tube. The 0 degrees helix angle fins enhance the heat transfer for R32 flow boiling in the tube by 60% while increasing the pressure drop by 40% on average compared with a smooth tube. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过实验研究了R32的传热和压降特性,以研究在微型多通道扁平管中的沸腾情况,该扁平管的螺旋角为0度,且与流动方向对齐。微翅片管的内径为1.7毫米,带有13个0.16毫米的高翅片。工作条件为质量通量为100-400 kg m(-2)s(-1),热通量为10-40 kW m(-2)和饱和温度为10-20摄氏度。螺旋角为0度的微翅片管,R32的沸腾传热系数随质量通量,热通量和饱和温度的增加而增加。传热受两个干燥点的影响,但散热片会延迟整个干燥点。压降随着质量通量和热通量的增加或饱和温度的降低而增加。微翅片管中的压降临界蒸汽质量低于光滑管中的临界蒸汽质量。与光滑管相比,0度螺旋角散热片使管中R32流动沸腾的传热提高了60%,而压降平均提高了40%。 (C)2015 Elsevier Inc.保留所有权利。

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