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首页> 外文期刊>International journal of computational methods >Limit cycle oscillation prediction and control design method for aeroelastic system based on new nonlinear reduced order model
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Limit cycle oscillation prediction and control design method for aeroelastic system based on new nonlinear reduced order model

机译:基于新的非线性降阶模型的航空弹性系统极限环振荡预测与控制设计方法

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摘要

When the amplitude of the oscillation of the unsteady flow is large or there is large perturbation relative to the mean background flow, the traditional proper orthogonal decomposition/reduced order model (POD/ROM) based on linearized time or frequency domain small disturbance solvers cannot capture the main nonlinear features well such as limit cycle oscillation (LCO), which is very dangerous for the structure. Therefore, the traditional linear ROMs are not good enough for limit cycles prediction and active control law design. A new nonlinear ROM based on dynamically nonlinear flow equation NPOD/ROM was investigated. The nonlinear second-order snapshot equation in time domain for POD basis construction is obtained from the Taylor series expansion of the flow solver. The simulation results indicate that the NPOD/ROM can capture LCO very well and is also very convenient for active control law design, while the traditional POD/ROM lose effectiveness.
机译:当非恒定流的振荡幅度较大或相对于平均背景流有较大扰动时,基于线性化时域或频域小扰动求解器的传统适当正交分解/降阶模型(POD / ROM)无法捕获主要非线性特性很好,例如极限循环振荡(LCO),这对结构非常危险。因此,传统的线性ROM不足以进行极限周期预测和主动控制律设计。研究了一种基于动态非线性流方程NPOD / ROM的新型非线性ROM。从流动求解器的泰勒级数展开获得了用于POD基础构造的时域非线性二阶快照方程。仿真结果表明,NPOD / ROM可以很好地捕获LCO,对于主动控制律设计也非常方便,而传统的POD / ROM则失去了有效性。

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