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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Frequency domain unsteady transonic aerodynamics for flutter and limit cycle oscillation prediction
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Frequency domain unsteady transonic aerodynamics for flutter and limit cycle oscillation prediction

机译:颤振的频域非稳态跨音速空气动力学和极限循环振荡预测

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The purpose of this study was to develop new approaches for predicting transonic flutter and limit cycle oscillations (LCO) using computational methods. The TSD equation is separated into the in-phase and out-of-phase components through a nonlinear harmonic averaging method. It is then solved in the frequency domain to obtain the aerodynamic forcing function which is needed in the flutter and LCO analyses. To predict flutter, equations are developed using the concept of generalized coordinates. The flutter speed is determined by examining the frequency-domain matrix equation eigenvalues. Flutter characteristics of the AGARD I-445.6 wing are analyzed. Flutter speed and frequency are well predicted in subsonic speed, but are overestimated in supersonic flow. To predict limit cycle oscillations, the frequency-domain aerodynamic coefficients are used to obtain a nonlinear time-domain expression for the aerodynamic force. Limit cycle oscillation characteristics of the DAST ARW-2 wing are analyzed. The results show LCO for Mach numbers ranging from 0.915 to 0.940.
机译:这项研究的目的是开发使用计算方法预测跨音速颤动和极限循环振荡(LCO)的新方法。通过非线性谐波平均法将TSD方程分为同相和异相分量。然后在频域中求解它,以获得颤振和LCO分析所需的空气动力函数。为了预测颤动,使用广义坐标的概念来开发方程式。通过检查频域矩阵方程的特征值来确定颤动速度。分析了AGARD I-445.6机翼的颤振特性。颤振速度和频率可以在亚音速下很好地预测,但在超音速流中会被高估。为了预测极限循环振荡,使用频域空气动力系数来获得空气动力的非线性时域表达式。分析了DAST ARW-2机翼的极限循环振荡特性。结果显示,马赫数的LCO为0.915至0.940。

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