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Three-dimensional numerical simulation of thermocapillary flow of moderate Prandtl number fluid in an annular pool

机译:环形池中中等普朗特数流体的热毛细管流动的三维数值模拟

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A series of unsteady three-dimensional numerical simulations were conducted for thermocapillary flow of 0.65 cSt silicone oil (Prandtl number Pr = 6.7) in annular pools with different depths (d = 1―17 mm) heated from the outer wall (radius r_o = 40 mm) and cooled at the inner cylinder (r_i = 20 mm) with an adiabatic solid bottom and adiabatic free surface. Simulation conditions corresponded to those in the microgravity experiments of Schwabe and Benz (Adv. Space Res. 29 (2002) 629). A temperature difference between the outer and inner walls (ΔT) generates roll-cell thermocapillary flow. Simulations with large ΔT predicted two types of oscillatory thermocapillary flows. One is the hydro thermal wave with curved spokes, which is dominant only in shallow pools (d = 1―3 mm). The second one is dominant in deep pools (d > 3 mm) and is characterized by traveling straight spoke patterns in the azimuthal direction. Critical conditions for the onset of the oscillatory flow in liquid pools of different depths were determined. Details of the flow and temperature fields were discussed. Oscillation frequencies were compared with the experimental results as functions of ΔT and pool depth d. Quantitative agreements were obtained for small ΔT and shallow pools.
机译:在从外壁加热的不同深度(d = 1至17 mm)的环形池中,对0.65 cSt硅油(普朗特数Pr = 6.7)的热毛细管流动进行了一系列的非稳态三维数值模拟(半径r_o = 40)毫米),并在具有绝热固体底部和绝热自由表面的内圆柱(r_i = 20毫米)处冷却。模拟条件对应于Schwabe和Benz的微重力实验中的条件(Adv。Space Res。29(2002)629)。外壁和内壁之间的温差(ΔT)会产生滚动单元热毛细流。大ΔT的模拟预测了两种类型的振荡热毛细流动。一种是具有弯曲辐条的水热波,仅在浅水池(d = 1-3 mm)中占主导地位。第二个在深水池(d> 3 mm)中占主导地位,其特征是沿方位角方向传播直辐图案。确定了在不同深度的液体池中发生振荡流的临界条件。讨论了流场和温度场的细节。振荡频率与实验结果进行了比较,作为ΔT和池深d的函数。对于较小的ΔT和浅池,获得了定量协议。

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