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Experimental and numerical investigation on particulate fouling characteristics of vortex generators with a hole

机译:洞穴涡流发生器颗粒污垢特性的实验与数值研究

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In this study, the particulate fouling characteristics in a heat exchange channel with a rectangular wing vortex generator were investigated both experimentally and numerically. First, the fouling and flow resistance characteristics of the smooth channel, vortex generator without a hole, and vortex generator with a hole were compared experimentally. Subsequently, the fouling characteristics of the rectangular vortex generator with and without a hole were compared under turbulent conditions via numerical simulations. Finally, the effects of the hole diameter, and the lateral and vertical hole distances in the vortex generator on the particulate fouling characteristics were evaluated. The results show that both the vortex generator with a hole and without a hole could inhibit the formation of particles on the heat transfer surface. Compared with the vortex generator without a hole, the vortex generator with a hole could better inhibit particulate fouling, and it had a low flow resistance loss. The asymptotic fouling resistance decreased first and then increased with increasing hole diametet, it decreased as the lateral distance of the hole increased, and increased as the vertical distance of the hole increased.
机译:在该研究中,在实验和数值上研究了具有矩形翼涡流发生器的热交换通道中的颗粒污垢特性。首先,实验比较光滑通道的污垢和流动性,涡流发生器,涡流发生器,以及带有孔的涡流发生器。随后,通过数值模拟在湍流条件下比较矩形涡流发生器的矩形涡流发生器的污垢特性​​。最后,评估了孔径的效果,涡流发生器中的涡流发生器中的横向和垂直孔距离进行了评估。结果表明,具有孔和没有孔的涡流发生器可以抑制传热表面上的颗粒的形成。与没有孔的涡流发生器相比,具有孔的涡流发生器可以更好地抑制颗粒状污垢,并且具有低流动性损失。渐近污垢电阻首先下降,然后随着孔径的增加而增加,随着孔的横向距离增加而降低,随着孔的垂直距离增加而增加。

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