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环形液池热毛细对流的线性稳定性研究
Linear Stability Analysis of Thermocapillary Convection in Annular Pools

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文摘 对外壁加热的环形液池热毛细对流进行了线性稳定性分析.采用Chebyshev配点法对Pr = 6.8、内外径之比为0.5、深宽比A范围为0.25?1.4的数值结果进行分析,发现流动的临界状态均为振荡形式,并且随着A的增大,临界雷诺数减小,相应的临界波数与振荡频率也呈减小趋势.能量分析结果表明,小扰动与基本流相互作用项较小,表面张力在径向做功与周向做功对小扰动的动能变化起主导作用.观察三者与液池深宽比的关系,发现A= 0.8时表面张力在径向做功项达到极小值,周向做功项以及小扰动与基本流相互作用项达到极大值.
其他语种文摘 The linear stability of thermocapillary convection in annular pools is studied through the Chebyshev-collocation method. As Pr = 6.8,the ratio of outer radius and inner radius is 0.5, and the range of aspect ratio A is from 0.25 to 1.4, numerical results show that the critical mode of the flow are oscillating. The critical Marangoni number, critical wave number and oscillating frequency decreases as A increases. Energy analysis shows that surface tension in the radial and azimuthal directions plays a leading role in the variation of perturbation energy. And the interaction between perturbation flow and the basic flow is small compared to the two former terms. We find out that the work done by the surface tension in the radial direction reaches minimum were analyzed, while the work done by the surface tension in the azimuthal direction and the interaction between the perturbation flow and the basic flow reach maximum, as A = 0.8.
来源 空间科学学报 ,2016,36(4):476-480 【核心库】
DOI 10.11728/cjss2016.04.476
关键词 热毛细对流 ; 环形液池 ; 线性稳定性分析
地址

中国科学院力学研究所, 中国科学院微重力重点实验室, 北京, 100190

语种 中文
文献类型 研究性论文
ISSN 0254-6124
学科 航天(宇宙航行)
基金 国家自然科学基金
文献收藏号 CSCD:5752238

参考文献 共 25 共2页

1.  Derby J J. Developing quantitative, multiscale models for microgravity crystal growth. Ann. N. Y. Acad. Sci,2006,1077(1):124-145 CSCD被引 3    
2.  Smith M K. Instabilities of dynamic thermo-capillary liquid layers Part 1. convective instabilities. J. Fluid Mech,1983,132:119-144 CSCD被引 46    
3.  Schatz M F. Experiments on thermo-capillary instabilities. Ann. Rev. Fluid Mech,2001,33(1):93-127 CSCD被引 17    
4.  Kamotani Y. Thermocapillary flow under micro-gravity-experimental results. Adv. Space Res,1999,24(10):1357-1366 CSCD被引 3    
5.  Kamotani Y. Microgravity experiments and analysis of oscillatory thermocapillary flow in cylindrical containers. J. Fluid Mech,2000,410:211-233 CSCD被引 3    
6.  Mukolobwiez N. Supercritical Eckhaus instability for surface-tension-driven hydrothermal waves. Phys. Rev. Lett,1998,80(21):4661 CSCD被引 3    
7.  Garnier N. Two dimensional hydrothermal waves in an extended cylindrical vessel. Eur. Phys. J.: B,2001,19(1):87-95 CSCD被引 14    
8.  Benz S. The three-dimensional stationary instability in dynamic thermocapillary shallow cavities. Exp. Fluids,2001,31(4):409-416 CSCD被引 9    
9.  Schwabe D. Thermocapillary flow instabilities in an annulus under microgravity-results of the experiment MAGIA. Adv. Space Res,2002,29(4):629-638 CSCD被引 11    
10.  Schwabe D. Oscillatory thermocapillary convection in open cylindrical annuli Part 1. Experiments under microgravity. J. Fluid Mech,2003,491:239-258 CSCD被引 18    
11.  Sim B C. Oscillatory thermocapillary convection in open cylindrical annuli Part 2. Simulations. J. Fluid Mech,2003,491:259-274 CSCD被引 18    
12.  Li Yourong. Three- dimensional numerical simulation of thermocapillary flow of moderate Prandtl number fluid in an annular pool. J. Cryst. Growth,2003,259(4):374-387 CSCD被引 20    
13.  Li Yourong. Three-dimensional oscillatory flow in a thin annular pool of silicon melt. J. Cryst. Growth,2004,260(1):28-42 CSCD被引 25    
14.  Shi Wanyuan. Hydrothermal waves in differentially heated shallow annular pools of silicone oil. J. Cryst. Growth,2006,290(1):280-291 CSCD被引 9    
15.  Peng Lan. Three-dimensional thermocapillary-buoyancy flow of silicone oil in a differentially heated annular pool. Int. J. Heat Mass Trans,2007,50(5):872-880 CSCD被引 13    
16.  Schwabe D. Buoyant-thermocapillary and pure thermocapillary convective instabilities in Czochralski systems. J. Cryst. Growth,2002,237/239:1849-1853 CSCD被引 11    
17.  Shi Wanyuan. Effect of pool rotation on thermocapillary convection in shallow annular pool of silicone oil. J. Cryst. Growth,2006,294(2):474-485 CSCD被引 11    
18.  Shi Wanyuan. Hydrothermal waves in rotating annular pools of silicon melt. Microg. Sci. Technol,2007,19(3):159-160 CSCD被引 3    
19.  Shi Wanyuan. Thermocapillary convection in a shallow annular pool heated from inner wall. Microgravity Sci. Technol,2007,19(3):104-105 CSCD被引 1    
20.  Shi Wanyuan. Sta bility of thermocapillary convection in rotating shallow annular pool of silicon melt. Microgravity Sci. Technol,2010,22(3):315-320 CSCD被引 4    
引证文献 1

1 张利 环形浅液池内低Prandtl数流体超临界热毛细对流演化 空间科学学报,2018,38(3):373-379
CSCD被引 1

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