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Heat transfer and friction characteristics in decaying swirl flow generated by different radial guide vane swirl generators

机译:不同径向导流叶片涡流发生器产生的衰减涡流中的传热和摩擦特性

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In radial guide vane swirl generators, the flow direction must change from the radial direction to the axial direction. This can be achieved either abruptly or by means of a fairing section, and each technique can be used in conjunction with an inserted centre body (deflecting element). This research was conducted to study the effect of the geometry of the deflecting element in the radial guide vane swirl generator on the heat transfer and fluid friction characteristics in decaying swirl flow. The radial guide vane swirl generators used in this investigation had three different configurations related to the deflecting element: the swirl generator with conical deflecting element, with spherical deflecting element and with no deflecting element. These swirl generators were compared with each other by taking into account their heat transfer and friction characteristics. An augmentation up to 150% in Nusselt number relative to that of the fully developed axial flow was obtained with a constant heat flux boundary condition, depending upon the vane angles, Reynolds numbers and type of the swirl generators. It was observed that the swirl generator with no deflecting element gave the highest Nusselt numbers and also gave the highest pressure drop in both the swirl generator and the test pipe. Evaluating the effectiveness of the swirl generators for enhancing heat transfer, it was found that using the swirl generator with no deflecting element may be advantageous in terms of heat transfer enhancement and energy saving in comparison with swirl generators with a deflecting element.
机译:在径向导向叶片涡流发生器中,流向必须从径向改变为轴向。这可以突然实现,也可以通过整流罩实现,每种技术都可以与插入的中心体(偏转元件)结合使用。进行了这项研究,以研究径向导向叶片旋流发生器中偏转元件的几何形状对衰减旋流中的传热和流体摩擦特性的影响。本研究中使用的径向导流叶片旋流发生器具有与偏转元件相关的三种不同配置:带圆锥形偏转元件,球形偏转元件和不带偏转元件的涡流发生器。通过考虑它们的传热和摩擦特性,将它们相互比较。在恒定的热通量边界条件下,取决于叶片角度,雷诺数和旋流发生器的类型,相对于完全展开的轴向流,努塞尔数最多可增加150%。观察到,没有偏转元件的涡旋发生器在旋涡发生器和试管中给出最高的努塞尔数,并且也给出最高的压降。在评估涡流发生器增强传热的有效性时,发现与不带偏转元件的涡流发生器相比,使用不带偏转元件的涡流发生器在传热增强和节能方面可能是有利的。

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