期刊文献+

A CFD Based Investigation of the Unsteady Hydrodynamic Coefficients of 3-D Fins in Viscous Flow 被引量:3

CFD理论黏性流场中三维振动水翼的非定常水动力性能(英文)
下载PDF
导出
摘要 The motion of the fins and control surfaces of underwater vehicles in a fluid is an interesting and challenging research subject.Typically the effect of fin oscillations on the fluid flow around such a body is highly unsteady, generating vortices and requiring detailed analysis of fluid-structure interactions.An understanding of the complexities of such flows is of interest to engineers developing vehicles capable of high dynamic performance in their propulsion and maneuvering.In the present study, a CFD based RANS simulation of a 3-D fin body moving in a viscous fluid was developed.It investigated hydrodynamic performance by evaluating the hydrodynamic coefficients (lift, drag and moment) at two different oscillating frequencies.A parametric analysis of the factors that affect the hydrodynamic performance of the fin body was done, along with a comparison of results from experiments.The results of the simulation were found in close agreement with experimental results and this validated the simulation as an effective tool for evaluation of the unsteady hydrodynamic coefficients of 3-D fins.This work can be further be used for analysis of the stability and maneuverability of fin actuated underwater vehicles.
出处 《Journal of Marine Science and Application》 2010年第3期250-255,共6页 船舶与海洋工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No.50879014
关键词 oscillating 3-D fin RANS hydrodynamic performance viscous flow 水动力系数 粘性流体 非定常 CFD 三维 流体结构相互作用 水翼 动力性能参数
  • 相关文献

参考文献13

  • 1Barrett D,Grosenbaugh M,Triantafyllou M (1996).The optimal control of a flexible hull robotic undersea vehicle propelled by an oscillating foil.Symp.Aut Underwater Veh.Tech.,3(2),1-9.
  • 2Childress S (1981).Mechanics of swimming and flying.Cambridge University Press,Cambridge,226-236.
  • 3Domenici P,Blake R (1997).The kinematics and performance of fish fast-start swimming.J.Exp.Biology,200,1165-1178.
  • 4Kelly S,Mason R,Anhalt C,Murray R,Burdick J (1998).Modeling and experimental investigation of carangiform locomotion for control.Proceedings of the 1998 American Control Conference,Boston,837-841.
  • 5Liu J,Dukes I,Knight R,Hu H (2004).Development of fish-like swimming behaviors for an autonomous robotic fish.Proceedings of the Control.University of Bath,IEEE,Bristol,1165-1170.
  • 6Mason R,Burdick J (1999).Propulsion and control of deformable bodies in an ideal fluid.Proc.IEEE Int.Conf.Rob.Aut,Tokyo,1035-1040.
  • 7Newman J,Wu T (1975).Hydrodynamical aspects of fish swimming,in swimming and flying in nature.Plenum Press,New York,15-34.
  • 8Saimek S,Li P (2001).Motion planning and control of a swimming Machine.Proceedings of the 2001 American ControlConference,New York,1915-1919.
  • 9Spierts I,van Leeuwen J (1999).Kinematics and muscle dynamics of C-and S-starts of carp.J.Exp.Biology,202,393-406.
  • 10Streitlien K,Triantafyllou GS (1996).Efficient foil propulsion through vortex control.AIAA Journal,34(11),2315-2318.

同被引文献24

  • 1成巍,苏玉民,秦再白,徐玉如.柔性仿金枪鱼月牙形尾鳍水动力分析[J].海洋工程,2004,22(4):73-79. 被引量:4
  • 2张晓庆,王志东,周林慧.三维摆动尾鳍的数值模拟[J].江苏科技大学学报(自然科学版),2006,20(1):6-10. 被引量:8
  • 3陈强,宋朝霞.我国未来新能源和可再生能源发展前景[J].能源科学进展,2006,2(2):5-10. 被引量:6
  • 4FRAENKEL P. Tidal current energy technologies [ J] . Interna- tional Journal of Avian Science, 2006, 148(4) :145-151.
  • 5US Department of Energy. Proceedings of the hydrokinetic and wave energy technologies [ C]//Technical and Environmental Issues Workshop. Washington DC, USA, 2006:1-131.
  • 6PONTA F L. Analisis fluidodina'mico de una hidroturbina de eje vertical [ D ]. Buenos Aires:University of Buenos Ai- res, 1999: 40-45.
  • 7PONTA F L, JACOVKIS P M. Marine-current power gener- ation by diffuseraugmented floating hydro-turbines [ J ]. Re- newable Energy, 2008, 33(20): 66-73.
  • 8MATSUSHIMA T, TAKAGI S, MUROYAMA S. Characteris- tics of a highly efficient propeller type small wind tubine with a diffuser[J]. Renewable Energy, 2006,31 (9) : 1343-1354.
  • 9ZHANG He, XU Yuru, CAI Haopeng. Using CFD soft- ware to calculate hydrodynamic coefficients [ J ]. Journal of Marine Science and Aoolication. 2010. 9(2):149-156.
  • 10DAVIS B V, SWAN D H, JEFFERS K A. Ultra low head hydroelectric power generation using ducted vertical axis water turbines [ R ]. Ottawa : Nova Energy Limited for NRC Hydraulics Laboratory, 1953.

引证文献3

二级引证文献24

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