• CN:11-2187/TH
  • ISSN:0577-6686

›› 2008, Vol. 44 ›› Issue (2): 62-67.

• 论文 • 上一篇    下一篇

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基于子循环—样条插值预测校正方法的流固耦合分析

张云峰;刘占生   

  1. 哈尔滨工业大学能源科学与工程学院
  • 发布日期:2008-02-15

Fluid-structure Interaction Simulation with Subcycling and Spline Interpolation Based Predict-correct Scheme

ZHANG Yunfeng;LIU Zhansheng   

  1. School of Energy Science and Engineering, Harbin Institute of Technology
  • Published:2008-02-15

摘要: 流固耦合计算通常使用的多场弱耦合方式会引入滞后误差,从而导致计算发散,尽管改进的线性预测校正方法可以消除误差,提高稳定性,但是存在计算时间耗费大的问题。为此提出将子循环方法与基于样条插值的预测校正方法相结合的耦合分析方法,并成功应用于流固耦合问题的数值计算,通过计算超声速壁板非线性颤振问题,表明此方法不但可以保持计算稳定性,而且可以降低计算时间耗费。此外,还模拟与分析样条插值点数对结果的影响,结果表明只需采用较少的插值点数就可以获得满意的精度。

关键词: 壁板颤振, 流固耦合, 样条插值, 预测校正, 子循环

Abstract: Weak coupling scheme in fluid-structure interaction simulation introduce lag error which may result in divergence of computation. The improved linear predict-correct scheme is able to eliminate the error and enhance computational stability, but there’re problems on prediction precision and computation cost. To improve the precision and to reduce costs, a new coupling scheme is proposed, which combines subcycling scheme and spline interpolation based predict-correct scheme. To indicate effectiveness of the scheme, a nonlinear supersonic panel flutter problem is numerically studied with linear predict-correct scheme and this new scheme. The results show that the new scheme is capable of reducing computing cost significantly while maintaining numerical stability. Also, the effect of number of spline points is studied. The results show that even less number of interpolation points is enough to keep computing accuracy.

Key words: Fluid-structure interaction, Panel flutter, Predict-correct scheme, Spline interpolation, Subcycling

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