Optimization of a Piezoelectric Fan using Fluid-Structure Interaction Simulation

被引:0
|
作者
Debrouwere, B. [1 ]
Degroote, J. [1 ]
Annerel, S. [1 ]
Vierendeels, J. [1 ]
机构
[1] Univ Ghent, Dept Flow Heat & Combust Mech, B-9000 Ghent, Belgium
来源
PROCEEDINGS OF THE SEVENTH INTERNATIONAL CONFERENCE ON ENGINEERING COMPUTATIONAL TECHNOLOGY | 2010年 / 94卷
关键词
piezofan; fluid-structure interaction; partitioned solution; IQN-ILS; optimization; heat fins;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
In this paper, the heat transfer from a single heat fin to the air flow in the wake of a piezoelectric fan (piezofan) is optimised. Both the heat fin and the piezofan are positioned in a channel, which has a significant influence on the flow field. The design variable is the frequency of the voltage applied to the piezofan. The heat transfer for different excitation frequencies is calculated using unsteady fluid-structure interaction simulations. To obtain a modular simulation environment, the flow equations and the structural equations are solved separately. However, the equilibrium on the fluid-structure interface is not satisfied automatically in this partitioned approach. Therefore, the interface quasi-Newton technique with an approximation for the inverse of the Jacobian from a least-squares model (IQN-ILS) is used to perform coupling iterations between the flow solver and the structural solver in each time step. With the unsteady fluid-structure interaction model, a surrogate model is constructed. The optimization of the surrogate model yields a frequency close to the first eigenfrequency of the structure.
引用
收藏
页数:13
相关论文
共 50 条
  • [11] Modeling and simulation of thin-walled piezoelectric energy harvesters immersed in flow using monolithic fluid-structure interaction
    Shang, Lan
    Hoareau, Christophe
    Zilian, Andreas
    FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2022, 206
  • [12] Fluid-structure interaction analysis of a piezoelectric flexible plate in a cavity filled with fluid
    Amini, Y.
    Emdad, H.
    Farid, M.
    SCIENTIA IRANICA, 2016, 23 (02) : 559 - 565
  • [13] Efficient shape optimization for fluid-structure interaction problems
    Aghajari, Nima
    Schaefer, Michael
    JOURNAL OF FLUIDS AND STRUCTURES, 2015, 57 : 298 - 313
  • [14] Time marching for simulation of fluid-structure interaction problems
    Longatte, E.
    Verreman, V.
    Souli, M.
    JOURNAL OF FLUIDS AND STRUCTURES, 2009, 25 (01) : 95 - 111
  • [15] Fluid-structure interaction simulation of aortic blood flow
    Crosetto, Paolo
    Reymond, Philippe
    Deparis, Simone
    Kontaxakis, Dimitrios
    Stergiopulos, Nikolaos
    Quarteroni, Alfio
    COMPUTERS & FLUIDS, 2011, 43 (01) : 46 - 57
  • [16] An approach to the simulation of fluid-structure interaction in the aortic valve
    Carmody, CJ
    Burriesci, G
    Howard, IC
    Patterson, EA
    JOURNAL OF BIOMECHANICS, 2006, 39 (01) : 158 - 169
  • [17] Cellular biomechanics: Fluid-structure interaction or structural simulation?
    Papadakis, L.
    Karatsis, E.
    Michalakis, K.
    Tsouknidas, A.
    JOURNAL OF BIOMECHANICS, 2022, 136
  • [18] FINITE ELEMENT SIMULATION OF VISCOELASTIC FLUID-STRUCTURE INTERACTION
    Drobny, Alexander
    Friedmann, Elfriede
    TOPICAL PROBLEMS OF FLUID MECHANICS 2021, 2021, : 40 - 47
  • [19] An Optimization of a Turbocharger Blade Based on Fluid-Structure Interaction
    Li, Minghai
    Li, Yuanzhe
    Jiang, Feng
    Hu, Jie
    PROCESSES, 2022, 10 (08)
  • [20] Simulation of the fluid-structure interaction of a floating wind turbine
    Wiegard, Bjarne
    Radtke, Lars
    Koenig, Marcel
    Abdel-Maksoud, Moustafa
    Duester, Alexander
    SHIPS AND OFFSHORE STRUCTURES, 2019, 14 (sup1) : S207 - S218