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Pool-Boiling Heat-Transfer Enhancement on Cylindrical Surfaces with Hybrid Wettable Patterns

机译:具有混合可湿模式的圆柱表面池沸腾传热的增强

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摘要

In this study, pool-boiling heat-transfer experiments were performed to investigate the effect of the number of interlines and the orientation of the hybrid wettable pattern. Hybrid wettable patterns were produced by coating superhydrophilic SiO2 on a masked, hydrophobic, cylindrical copper surface. Using de-ionized (DI) water as the working fluid, pool-boiling heat-transfer studies were conducted on the different surface-treated copper cylinders of a 25-mm diameter and a 40-mm length. The experimental results showed that the number of interlines and the orientation of the hybrid wettable pattern influenced the wall superheat and the HTC. By increasing the number of interlines, the HTC was enhanced when compared to the plain surface. Images obtained from the charge-coupled device (CCD) camera indicated that more bubbles formed on the interlines as compared to other parts. The hybrid wettable pattern with the lowermost section being hydrophobic gave the best heat-transfer coefficient (HTC). The experimental results indicated that the bubble dynamics of the surface is an important factor that determines the nucleate boiling.
机译:在这项研究中,进行了池沸腾传热实验,以研究中间线的数量和混合可湿性图案的方向的影响。通过将超亲水性SiO2涂覆在遮蔽的,疏水的圆柱形铜表面上,可以产生混合可湿性图案。使用去离子水作为工作流体,对直径为25毫米,长度为40毫米的不同表面处理过的铜圆柱体进行了池沸腾传热研究。实验结果表明,中间线的数量和混合可湿性图案的方向影响壁过热和HTC。通过增加中间线的数量,与普通表面相比,HTC得以增强。从电荷耦合器件(CCD)相机获得的图像表明,与其他部件相比,在中间线上形成了更多的气泡。最低部分为疏水性的混合可湿性图案具有最佳的热传递系数(HTC)。实验结果表明,表面的气泡动力学是决定核沸腾的重要因素。

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