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Time-domain Approach for Acoustic Scattering of Rotorcraft Noise

机译:旋翼飞机噪声声散射的时域方法

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A new and efficient time-domain acoustic scattering method is applied to solve acoustic scattering of rotorcraft noise. The time-domain method provides a solution for all frequencies of interest in a single computation and is able to predict acoustic scattering of aperiodic signals. In the current method, the pressure boundary condition on the scattering surface is used to determine the strength of equivalent sources located within the scattering surface, which in turn are used to determine the scattered acoustic field. Linear shape functions are used to discretize the strength of the equivalent sources in time and singular value decomposition is used to find the least-squares solution and to overcome potential numerical instability. The prediction is found to be in excellent agreement with the exact solution. The numerical method is used to predict acoustic scattering of a Bol05 tail rotor noise by a representative fuselage. The time-domain code results of SPL are validated against the results obtained by a frequency domain analysis. Finally, acoustic scattering for an impulsive noise source is investigated to simulate main rotor BVI noise. A large computational time saving is achieved compared to the frequency-domain approach, in which the computation must be repeated for each frequency.
机译:为了解决旋翼机噪声的声散射问题,提出了一种新的高效的时域声散射方法。时域方法可在一次计算中为所有感兴趣的频率提供解决方案,并且能够预测非周期性信号的声散射。在当前方法中,散射表面上的压力边界条件用于确定位于散射表面内的等效源的强度,而等效源又用于确定散射声场。线性形状函数用于在时间上离散等效源的强度,奇异值分解用于找到最小二乘解并克服潜在的数值不稳定性。发现该预测与确切的解决方案非常吻合。数值方法用于通过代表性的机身预测Bol05尾桨噪声的声散射。对照通过频域分析获得的结果来验证SPL的时域代码结果。最后,研究了脉冲噪声源的声散射,以模拟主转子BVI噪声。与频域方法相比,可以节省大量的计算时间,在频域方法中,必须为每个频率重复进行计算。

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