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首页> 外文期刊>International Journal of Heat and Mass Transfer >Effect of interfacial heat transfer on basic flow and instability in a high-Prandtl-number thermocapillary liquid bridge
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Effect of interfacial heat transfer on basic flow and instability in a high-Prandtl-number thermocapillary liquid bridge

机译:界面传热对高P数热毛细管液体桥中基本流动和不稳定性的影响

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摘要

The effects of interfacial heat transfer on the basic flow and instability of thermocapillary convection in high-Prandtl-number (Pr) liquid bridges are investigated experimentally and computationally. Liquid bridges of silicone oil (Pr = 28) are formed in a gap between the lower cooled rod and the upper heated rod, both with a diameter of 5 mm, where the rods are surrounded by a cylindrical enclosure made from an acrylic block. The instability data are collected experimentally forAR = 0.30–0.50 and a wide range of (TC-Ta), whereARis the aspect ratio (= height/diameter) of the liquid bridge,TCis the cooled rod temperature, andTais the ambient gas temperature. The data indicate the appreciable effect of interfacial heat transfer on the instability and basic flow pattern of thermocapillary convection in liquid bridges. Each instability curve forAR = 0.35–0.50 shows a local peak of the critical temperature difference and the oscillation frequency at a certain (TC-Ta), where such a peak is associated with the transition of the azimuthal oscillation mode. The heat transfer ratioQLB/QHRis evaluated from the numerical simulation to discuss the effect of interfacial heat transfer, whereQLBandQHRare the heat transfer rates at the liquid bridge surface and at the heated rod surface, respectively. It is found that the instability conditions for differentARvalues are well correlated withQLB/QHR. This correlation is consistent with the effect ofQLB/QHRon the basic flow and temperature fields, both in the liquid bridge and in the ambient gas. The resultant change in the basic flow and temperature field inside the liquid bridge leads to the change in the onset conditions of oscillatory thermocapillary convection.
机译:通过实验和计算研究了界面传热对高普朗特数(Pr)液桥中基本流动和热毛细管对流不稳定性的影响。在下部冷却棒和上部加热棒之间的缝隙中均形成硅油的液桥(Pr == 28),两者的直径均为5 mm,其中棒被由丙烯酸树脂块制成的圆柱形外壳包围。实验性地收集了AR for = 0.30-0.50和宽范围的(TC-Ta)的不稳定性数据,其中AR是液桥的长宽比(=高度/直径),TC是冷却杆的温度,Ta是环境气体的温度。数据表明界面传热对液桥中热毛细管对流的不稳定性和基本流动模式的影响。每个AR = 0.35-0.50的不稳定性曲线都显示了临界温差的局部峰值和某个频率(TC-Ta)处的振荡频率,其中该峰值与方位振荡模式的转变有关。通过数值模拟对传热比QLB / QHR进行了评估,以讨论界面传热的影响,其中QLB和QHR分别是液桥表面和加热棒表面的传热速率。发现不同AR值的不稳定性条件与QLB / QHR具有很好的相关性。这种相关性与QLB / QHR对液桥和周围气体中基本流场和温度场的影响是一致的。液桥内部基本流场和温度场的最终变化导致振荡热毛细管对流的起始条件发生变化。

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