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Flutter derivatives from free decay tests of a rectangular B/D = 10 section estimated by optimized system identification methods

机译:通过优化的系统识别方法估算的矩形B / D = 10截面的自由衰减测试的颤振导数

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The present paper suggests a hybrid system identification method to estimate the flutter derivatives from coupled free vibration tests, An optimized covariance-based method is used as the initial guess in the modified unifying least squares method. This combination optimizes the accuracy described by the coefficients of determinations between measured and synthesized signals. Flutter derivatives are identified at high wind speeds, close to and even above the critical flutter wind speed. Results for a sharp-edged rectangular section with a width-to-depth ratio B/D = 10 are presented for two different torsional-to-vertical frequency ratios. In one case the torsional frequency are lower than the vertical, due to a high mass moment of inertia, which makes it possible to estimate the flutter derivatives at very high reduced wind speeds. This reveals that the torsional aerodynamic damping derivative A(2)(*) reaches a positive maximum followed by a continuous decreasing tendency and eventually negative A(2)(*) values are identified. This implies that torsional flutter for the B/D = 10 section can be avoided if the structural damping is designed to balance the negative torsional aerodynamic damping expressed by the positive peak value for A(2)(*).
机译:本文提出了一种基于耦合自由振动测试的颤振导数估计的混合系统辨识方法。在改进的统一最小二乘法中,基于优化的协方差的方法被用作初始猜测。这种组合优化了测量信号和合成信号之间的确定系数所描述的精度。颤振导数是在高风速下确定的,接近或什至高于临界颤振风速。对于两个不同的扭转与垂直频率比,给出了宽度与深度之比B / D = 10的尖锐矩形截面的结果。在一种情况下,由于高质量惯性矩,扭转频率低于垂直频率,这使得可以在非常高的降低风速下估算颤振导数。这表明扭转空气动力阻尼导数A(2)(*)达到正最大值,然后是连续下降的趋势,最终确定为负A(2)(*)。这意味着如果将结构阻尼设计为平衡由A(2)(*)的正峰值表示的负扭力气动阻尼,则可以避免B / D = 10截面的扭振。

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