期刊文献+

Numerical Investigation of an Oscillating Airfoil using Immersed Boundary Method 被引量:5

Numerical Investigation of an Oscillating Airfoil using Immersed Boundary Method
原文传递
导出
摘要 Based on the immersed boundary method, a numerical simulation for an oscillating airfoil is established and a preliminary analysis of the oscillating airfoil is presented with an emphasis on the physical understanding of fluid-structure interaction. In order to validate the method, two simulation cases: oscillating circular cylinder at low K-C number and two degrees of freedom oscillating cylinder are carded out first and the results are in good agreement with the previous re:searches. In the oscillating airfoil simulation, it is found that the reduced velocity U^*. is a very sensitive factor and especially U^*-2.8 is the critical stable boundary in the present work. The method shows the predominance of time saving in computational process for such a complicated fluid-structure interac- tion problem.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第5期413-422,共10页 热科学学报(英文版)
基金 supported by NSFC under grants 50736007 and 50136010
关键词 TURBOMACHINERY IB method fluid-structure interaction. 振荡翼型 数值模拟 边界 结构相互作用 验证方法 计算过程 摆动缸 流体
  • 相关文献

参考文献28

  • 1HUANG, X.Y. Active control of aerofoil flutter, A1AA Journal 1987, 25, (8), pp 1126-1132.
  • 2SUN, X. and KAJI, S. Effects of Wall Admittance Changes on Aeroelastic Stability of Turbomachines, AIAA Journa, 12000, 38, (9), pp 734-755.
  • 3SUN, X., JING, X. and ZHAO, H. Control of Blade Flutter by Smart-casing Treatment, AIAA Journal of Propulsion and Power, 2001,17, (2), pp 2.48-255.
  • 4LU, P. J., PAN, D. and YOU, H.D. Acoustic Flutter Control of 3D Transonic Rotor Flow, AIAA Journal of Propulsion and Power, 2002, 18, (5), pp 1003-1011.
  • 5WHITEHEAD, D.S. Classical Two-Dimensional Methods, AGARD Manual on Aeroelasticity in Axial Flow Turbomachines 1987, North Atlantic Treaty Organization, Advisory Group for Aerospace Research and Develop- ment, 298, (1), Chapter 3.
  • 6DOWELL, E.H. and HALL, K.C. Modeling of fluidstructure interaction, Annual Review of Fluid Mechanics 2001, 33, pp 445-90.
  • 7MELVILLE, R.B., MORTON, S.A. and RIZZETTA, D.E Implementation of a fully-implicit, aeroelastic NavierStokes solver, AIAApaper, 1997-2039.
  • 8MORTON, S.A. and MELVILLE, R.B. Accuracy and coupling issues of aeroelastic Navier-Stokes solutions on deforming meshes, AIAA paper, 1997-1085.
  • 9PIPERNO, S. Explicit/implicit fluid/structure staggered procedures with a structural predictor and fluid subcycling for 2D inviscid aeroelastic simulations, International Journal of Numerical Methods for Fluids, 1997, 25, pp 1207-1226.
  • 10BLOM, EJ. A monolithical fluid-structure interaction algorithm applied to the piston problem, Computer Methods in Applied Mechanics and Engineering, 1998, 167, pp 369-391.

同被引文献33

  • 1叶建,邹正平,陆利蓬,杨琳.低雷诺数下翼型前缘流动分离机制的研究[J].北京航空航天大学学报,2004,30(8):693-697. 被引量:18
  • 2白鹏,崔尔杰,周伟江,李锋.等速上仰翼型动态失速现象研究[J].力学学报,2004,36(5):569-576. 被引量:16
  • 3宫兆新,鲁传敬,黄华雄.浸入边界法及其应用[J].力学季刊,2007,28(3):353-362. 被引量:27
  • 4Hansen M O L.Aerodynamics of Wind [M]. Beijing: China Electric Power Press, 2009:16 22.
  • 5WuBow S, Sitzki L, Hahm T. 3D-sinmlation of the Tur- bulent Wake Behind a Wind Turbine [C]// The Second Conference on the Science of Making Torque from Wind, Lyngby Denmark, 2007, IOP Publishing, Conference Se- ries, 2007, 75:012033.
  • 6Sezer Uzol N, Gupta A, and Long L. N. 3-D Time Accu- rate Inviseid and Viscous CFD Simulations of Wind ~151r- bine Rotor Flow Fields [C]// International Conference on Parallel Computational Fluid Dynamics, Antalya Turkey, 2007 Springer Berlin Heidelberg, 45~464.
  • 7Lenka Dubcoval - Miloslav Feistauer, Jaromfr Horai~ek, Petr Sv~ek. Numerical Simulation of Interaction Be- tween Turbulent Flow and a Vibrating Airfoil [J]. Com- puting and Visualization in Science, 2009, 12(5): 20~225.
  • 8Yu M L, Hu H, Wang Z J. A Numerical Study of Vortex-Dominated flow Around an Oscillating Airfoil With High-Order Spectral Difference Method [C]// 48th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, Orlando, FL, United States, 2010.
  • 9胡丹梅,张建平.水平轴风力机近尾迹流场数值模拟[J].太阳能学报,2010,31(11):1485-1490. 被引量:5
  • 10张立茹,汪建文,曲立群,吴克启.风力机叶尖有无小翼三维流场的数值研究[J].太阳能学报,2011,32(11):1599-1604. 被引量:11

引证文献5

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部