帮助 关于我们

返回检索结果

大普朗特数大液桥浮力--热毛细对流地面实验
GROUND EXPERIMENTS OF BOUYANT THERMOCAPILLARY CONVECTION OF LARGE SCALE LIQUID BRIDGE WITH LARGE PRANDTL NUMBER

查看参考文献9篇

吴勇强 1   段俐 1   李永强 2   康琦 1  
文摘 通过地面实验研究大尺寸液桥的浮力--热毛细对流。实验采用2cst硅油(Pr = 28:571),研究了不同高径比(A = l=d)和体积比的液桥起振,分析了温度振荡频率及相位变化,探讨了热流体波的问题。实验液桥的桥柱直径为20 mm,由于受重力的限制,建立了3~4.25mm范围内的矮桥。通过伸入液桥内部不同位置的热电偶的温度信号,发现流场是同时起振的,不同的桥高和体积比有不同的振荡模式,并且随着温差的增加,频率近似以线性增加,各点的振荡相位是一个连续性变化的过程。不同高径比的液桥转捩到混沌的途径是不一样的。
其他语种文摘 Thermocapillary-driven convection in a large scale liquid bridge was investigated by ground experiments in this paper. We used 2 cst silicone oil (Pr = 28:571), observed the onset of liquid bridge with different aspect ratios (A = l=d) and volumes, analyzed the transformation of temperature oscillation frequency and phase, discussed the problems of hydrothermal waves. The column diameter of liquid bridge was 20 mm. Due to the limit by gravity, we constructed the bridge with 3{4.25mm height. With the help of five azimuthal thermocouples inserted in the bridge interior, we discovered that temperature oscillation in flow field occurs at the same time; bridges with different aspect ratios and volumes have different flow modes, and with the increase of temperature difference, the frequency increases approximately linearly, and oscillation phase of each temperature oscillation curve continuously changes. Bridges with different aspect ratios have different ways to chaos.
来源 力学学报 ,2012,44(6):981-989 【核心库】
DOI 10.6052/0459-1879-12-148
关键词 大尺寸 ; 液桥 ; 温度振荡 ; 频率 ; 相位
地址

1. 中国科学院力学研究所, 中国科学院微重力实验室, 北京, 100190  

2. 东北大学理学院, 沈阳, 110004

语种 中文
ISSN 0459-1879
学科 力学
基金 国家自然科学基金 ;  中国科学院知识创新工程重要方向项目 ;  载人航天空间科学项目资助
文献收藏号 CSCD:4691615

参考文献 共 9 共1页

1.  Preisser F. Steady and oscillatory thermocapillary convection in liquid columns with free cylindrical surface. Fluid Mechanics,1983,126:545-567 被引 5    
2.  Velten R. The periodic instability of thermocapillary convection in cylindrical liquid bridges. Phys Fluids,1991,3:267-279 被引 3    
3.  Frank S. Temporal and spatial elements of thermocapillary convection in floating zones. Experiments in Fluids,1997,23:234-251 被引 3    
4.  Zeng Z. Direct numerical simulation of oscillatory Marangoni convection in cylindrical liquid bridges. Journal of Crystal Growth,1999,204:395-404 被引 3    
5.  Hu W R. Influence of liquid bridge volume on the floating zone convection. Cryst Res Technol,2003,38(7/8):627-634 被引 3    
6.  Ryzhkov I I. Thermocapillary instabilities in liquid bridges Revisited. Phys Fluids,2011,23:1-6 被引 1    
7.  Xu J J. Convective thermocapillary instabilities in liquid bridges. Phys Fluids,1984,27:1102-1107 被引 5    
8.  Yano T. Space experiment on the instability of Marangoni convection in large liquid bridge-MEIS-4: effect of Prandtl number. Journal of Physics: Conference Series,2011,327:1-7 被引 2    
9.  Kawamura H. Report on microgravity experiments of marangoni convection aboard international space station. Journal of Heat Transfer,2012,134:1-13 被引 4    
引证文献 3

1 王佳 大尺寸液桥热毛细对流失稳性地面实验研究 力学学报,2015,47(4):580-586
被引 4

2 邹勇 液桥内热质耦合对流不稳定性及旋转磁场法控制 力学学报,2017,49(6):1280-1289
被引 3

显示所有3篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号