首页> 外文会议>ASME Heat Transfer Conference >EXPERIMENTAL STUDY OF CONDENSATION FLOW INSIDE HORIZONTAL SMOOTH, HERRINGBONE AND THREE ENHANCED SURFACE TUBES
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EXPERIMENTAL STUDY OF CONDENSATION FLOW INSIDE HORIZONTAL SMOOTH, HERRINGBONE AND THREE ENHANCED SURFACE TUBES

机译:水平光滑,人字形和三种增强表面管内凝结流动的实验研究

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Enhanced condensation heat transfer of two-phase flow on the horizontal tube side receives more and more concerns for its fundamentality and importance. Experimental investigations on convective condensation were performed respectively in different horizontal tubes: (i) a smooth tube (11.43 mm, inner diameter); (ii) a herringbone tube (11.43 mm, fin root diameter); and (iii) three enhanced surface (EHT) tubes (11.5 mm, equivalent inner diameter): 1EHT tube, 2EHT-1 tube and 2EHT-2 tubes. The surface of EHT tubes is enhanced by arrays of dimples with the background of petal arrays. Experiments were conducted at a saturation temperature of approximately 320 K; 0.8 inlet quality; and 0.2 outlet quality; 72-181 kg·m~(-2)·s~(-1) mass flux using R22, R32 and R410A as the working fluid. The refrigerant R32 presents great heat transfer performance than R410A and R22 at low mass flux due to its higher latent heat of vaporization and larger thermal conductivity. The heat enhancement ratio of the herringbone tube is 2.72-2.82, rated number one. The primary dimples on the EHT tube increase turbulence and flow separation, and the secondary petal pattern produce boundary layer disruption to many smaller scale eddies. The 2EHT tubes are inferior to the 1EHT tube. A performance factor is used to evaluate the enhancement effect except of the contribution of area increase.
机译:增强水平管侧的两相流的冷凝传热接收到其基本性和重要性的越来越关注。在不同的水平管中分别进行对对流缩合的实验研究:(i)光滑的管(11.43mm,内径); (ii)人字形管(11.43mm,翅片直径); (iii)三种增强表面(EHT)管(11.5毫米,等效的内径):1,2eht-1管和2eht-2管。 EHT管的表面由花瓣阵列的背景通过凹坑阵列增强。实验在约320k的饱和温度下进行; 0.8入口质量;和0.2出口质量; 72-181 kg·m〜(-2)·s〜(-1)质谱使用R22,R32和R410a作为工作流体。由于其较高的蒸发热和较大的导热性,制冷剂R32在低质量通量下呈现出比R410A和R22的巨大传热性能。人字形管的热增强比为2.72-2.82,额定数量。 EHT管上的主要凹坑增加了湍流和流动分离,并且次级花瓣图案产生了许多小规模漩涡的边界层中断。 2eht管不如1eht管。除了面积增加之外,使用性能因素来评估增强效果。

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