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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical investigation on heat transfer and flow characteristics in helically coiled mini-tubes equipped with dimples
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Numerical investigation on heat transfer and flow characteristics in helically coiled mini-tubes equipped with dimples

机译:带有酒窝的螺旋盘绕微型管传热和流动特性的数值研究

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Heat transfer and flow in dimpled helically coiled mini-tubes are numerically examined. The effects of Reynolds number Re, ratio of tube diameter to coil diameter t, dimple density d and dimple size s are examined. It is shown the dimple case provides a higher Nusselt number Nu upon the smooth case. The highest and lowest dimensionless heat transfer coefficients Nu/Nu(0) are 2.281 and 1.788, respectively. The Nu/Nu(0) firstly rises and then declines against the increase in Re, producing a peak value. Greater Nu/Nuo is achieved when a lower t is used. A decrease in d or s results in a higher Nu/Nuo with Re lower than particular-Re, while an opposite trend occurs with Re higher than particular-Re. The highest and lowest evaluation parameter (Nu/Nu(0))/(f/f(0))(1/3) are 1.830 and 1.437, respectively. A better performance from energy saving viewpoint is achieved with a lower t. Besides, great reduction in wall temperature level is achieved due to dianples. With the increase in Re, the flow pattern develops accompanied with more obvious separation and reattachment behavior. Utilization of dimples produces significant promotion in velocity level close to the boundary layer, which is principally responsible for heat transfer enhancement. The boundary velocity coefficient shows great similarity to Nu/Nu(0). Tangential velocity is greatly promoted when dimples are fixed, which is believed to generate intensified secondary flow. The thickness of the low velocity layer and the high temperature region in the fluid domain are greatly reduced due to dimples. Furthermore, a lower temperature gradient level and a more uniform fluid temperature field are achieved owing to dimples. The dimple case brings about great reduction on average heat transfer entropy generation level, with enhanced effect at a lower t. An evident decrease in maximum wall temperature is identified when dimples are used. Correlations for predicting Nusselt number and friction factor are obtained. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在数值上检查了波纹螺旋盘管中的传热和流动。检查了雷诺数Re,管直径与线圈直径的比t,凹痕密度d和凹痕尺寸s的影响。可以看出,在光滑情况下,酒窝情况提供了更高的努塞尔特数Nu。最高和最低无因次传热系数Nu / Nu(0)分别为2.281和1.788。 Nu / Nu(0)首先随着Re的增加而上升然后下降,从而产生一个峰值。当使用较低的t时,可以获得更大的Nu / Nuo。 d或s的减小导致Re低于特定Re的Nu / Nuo更高,而Re高于特定Re的Nu发生了相反的趋势。最高和最低评估参数(Nu / Nu(0))/(f / f(0))(1/3)分别为1.830和1.437。从节能的角度来看,较低的t可获得更好的性能。此外,由于使用了双管,大大降低了壁温水平。随着Re的增加,流态发展,伴随着更明显的分离和重新附着行为。凹坑的利用在靠近边界层的速度水平上产生了显着的促进作用,这主要负责传热的提高。边界速度系数与Nu / Nu(0)非常相似。固定酒窝时,切线速度会大大提高,据信会产生强化的二次流。由于凹痕,低速层的厚度和流域中的高温区域的厚度大大减小。此外,由于凹痕,获得了较低的温度梯度水平和更均匀的流体温度场。酒窝的情况大大降低了平均传热熵的产生水平,并在较低的t下具有增强的作用。使用酒窝时,可以确认最高壁温明显降低。获得了用于预测努塞尔数和摩擦系数的相关性。 (C)2018 Elsevier Ltd.保留所有权利。

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