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Experimental thermal and flow characteristics in a traverse corrugated tube fitted with regularly spaced modified wire coils

机译:穿着瓦楞凿管中的实验热流和流动特性配有规则间隔的改性线圈

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The work presents experimental investigations on turbulent thermal and flow characteristics in a traverse corrugated tube (TCT) fitted with regularly spaced wire coils with gradually varying width (WCs-GVW). The experiments were performed in the TCT with WCs-GVW having constant heat flux conditions at Re = 6000 to 18000 by using air as working fluid. The goal motivated by this compound heat transfer enhancement technology was to induce transverse vortices by ribs and to generate swirl flows by WCs, aimed to impart flow separation and reattachment and flow mixing, and hence improvement in heat transfer. Three arrangements including the diverging arrangement of WCs (DWC), the converging arrangement of WCs (CWC) and the diverging and converging arrangement of WCs (DCWC) and five space ratios at S/D = 0.60, 1.55, 2.97, 5.34 and 10.09 were considered. Effects of those parameters on Nusselt number (Nu), friction factor (f), performance evaluation criterion (PEC), Bejan number (Be) and augmented entropy generation number (phi(s)) were analyzed. The main findings are that the CWC arrangement possesses the lowest PEC and the Nu and f in the DWC arrangement increase with decreasing the space ratio. In contrast to the plain tube, the Nu in the TCT with WCs-GVW increases nearly L74 to 2.26 times while the f is in a range of about 4.18-10.68 times. The obtained results show that the maximum PEC of about L13 is achieved by the WCs-GVW with DWC arrangement at S/D = 10.09 and Re = 14102. However, all compound ones exhibit lower PEC values than the alone use of the TCT. In addition, it is found that the Be in the baseline of the plain tube is decreased via the employment of the alone TCT or co-use of the TCT and WCs-GVW, nevertheless, the total entropy production is dominated by the entropy production due to heat transfer under considered parameters. The phi(s) in the plain tube is reduced to be less than unity by using the enhanced devices indicates the thermodynamic advantage of those TCT and TCT/WCs-GVW, and the lowest phi(s) of about 0.5 is gained by utilizing the WCs-GVW with DWC arrangement at S/D = 0.60 and Re = 6517. At last, the empirical formulas of the investigated TCT and TCT/WCs-GVW in terms of Nu and f are proposed.
机译:该工作介绍了在具有逐渐变化的宽度(WCS-GVW)的横向波纹管(TCT)中的湍流热和流动特性的实验研究。通过使用空气作为工作流体,在具有WCS-GVW的TCT中进行实验,在RE = 6000至18000处具有恒定的热通量条件。通过该化合物传热增强技术的主导的目标是通过肋骨诱导横向涡流并通过WCS产生旋流流动,旨在赋予流动分离和重新连接和流动混合,从而改善热传递。包括WCS(DWC)的发散布置,WCS(CWC)的会聚装置以及WCS(DCWC)和5个空间比在S / D = 0.60,1.55,2.97,5.34和10.09中的三种布置经过考虑的。分析了那些参数对豆浆数(NU),摩擦系数(F),性能评估标准(PEC),BEJAN号(BE)和增强熵生成数(PHI(S))的影响。主要研究结果是CWC装置具有最低的PEC和DWC布置中的NU和F随着空间比率而增加。与普通管相比,具有WCS-GVW的TCT中的NU将近L74增加到2.26倍,而F的范围为约4.18-10.68倍。所得结果表明,在S / D = 10.09和Re = 14102处,WCS-GVW的WCS-GVW具有DWC布置的最大PEC。然而,所有化合物都表现出低于单独使用TCT的PEC值。另外,发现通过单独的TCT或CTCT和WCS-GVW的共同使用,普通管的基线的基线降低,尽管如此,总熵产生是由熵产生的主导在考虑参数下传热。通过使用增强型器件,普通管中的PHI(S)减少为小于UNI核,指示那些TCT和TCT / WCS-GVW的热力学优点,并且通过利用该TCT和TCT / WCS-GVW的最低PHI(S)为约0.5 WCS-GVW在S / D = 0.60和RE = 6517处具有DWC布置。最后,提出了研究TCT和TCT / WCS-GVW的经验公式。

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