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Oscillatory thermocapillary convection in a liquid bridge:Part 1—1g Experiments

机译:液桥中的振荡热毛细管对流:第1-1g实验

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An empirical study was conducted to investigate convection in a silicone oil liquid bridge of dimensionless volume V/ V_o between hot and cool disks under both normal gravity (1g) conditions and under microgravity (μg) conditions in free-fall. The study explored the influences on the critical temperature difference (ΔT_C) at which thermocapillary convection changes from steady to oscillatory, and on the process of transition from periodic to chaotic thermocapillary convection. This paper is divided into two parts. Part 1 (this part) describes the experiments conducted under normal gravity conditions, and part 2 describes experiments under μg conditions in free-fall. The results of the study indicate that ΔT_C is very sensitive to V/V_o. Very high critical temperature difference ranges (the gap or stable range) were examined over the V/V_o range. In cases where V/V_o is larger than the specific V/V_o range, it was found that ΔT_C decreases with increasing V/V_o. Conversely, where V/V_o is smaller than the specific V/V_o range, ΔT_C increases with increasing V/V_o. The study also clarified the effects of the kinematic viscosity of the working medium. These findings suggest that the striations of grown crystals can be controlled by varying the volume of the melt. Five types of temperature oscillatory phenomena (P, P2, QP, P2 + QP, and C) were identified and shown on a ΔT-V/V_o plane diagram under 1g and μg conditions. Moreover, the velocity pattern in a transverse cross-section of the liquid bridge, the critical condition for the onset of oscillation, and simultaneous measurements of three-dimensional flow pattern and temperature were obtained under normal gravity conditions. The findings of these experiments may be useful for establishing techniques for controlling thermocapillary convection when semiconductor or opto-electronic crystals are grown by the floating zone method under 1g and μg conditions.
机译:进行了一项经验研究,以研究在正常重力(1g)和微重力(μg)下自由下落的热盘和冷盘之间无量纲V / V_o的硅油液桥中的对流。该研究探讨了对热毛细对流从稳定到振荡变化的临界温差(ΔT_C)以及从周期性热毛细对流转变为混沌过程的影响。本文分为两部分。第1部分(本部分)描述了在正常重力条件下进行的实验,第2部分描述了在μg条件下自由下落的实验。研究结果表明,ΔT_C对V / V_o非常敏感。在V / V_o范围内检查了非常高的临界温差范围(间隙或稳定范围)。在V / V_o大于特定V / V_o范围的情况下,发现ΔT_C随着V / V_o的增加而减小。相反,在V / V_o小于特定V / V_o范围的情况下,ΔT_C随着V / V_o的增加而增加。研究还阐明了工作介质运动粘度的影响。这些发现表明,可以通过改变熔体的体积来控制生长晶体的条纹。确定了五种类型的温度振荡现象(P,P2,QP,P2 + QP和C),并在1g和μg条件下在ΔT-V/ V_o平面图中显示。此外,在正常重力条件下,可以获得液桥横截面的速度模式,振荡开始的临界条件以及同时测量三维流动模式和温度。这些实验的发现对于建立通过浮区法在1g和μg条件下生长半导体或光电晶体时控制热毛细管对流的技术可能有用。

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