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Sound Emission of Rotor Induced Deformations of Generator Casings

机译:发电机壳体转子的声发射畸变

摘要

The casing of large electrical generators can be deformed slightly by the rotor's magnetic field. The sound emission produced by these periodic deformations, which could possibly exceed guaranteed noise emission limits, is analysed analytically and numerically. From the deformation of the casing, the normal velocity of the generator's surface is computed. Taking into account the corresponding symmetry, an analytical solution for the acoustic pressure outside the generator is round in terms of the Hankel function of second order. The normal velocity or the generator surface provides the required boundary condition for the acoustic pressure and determines the magnitude of pressure oscillations. For the numerical simulation, the nonlinear 2D Euler equations are formulated In a perturbation form for low Mach number Computational Aeroacoustics (CAA). The spatial derivatives are discretized by the classical sixth-order central interior scheme and a third-order boundary scheme. Spurious high frequency oscillations are damped by a characteristic-based artificial compression method (ACM) filter. The time derivatives are approximated by the classical 4th-order Runge-Kutta method. The numerical results are In excellent agreement with the analytical solution.
机译:大型发电机的外壳会因转子的磁场而略微变形。对这些周期性变形产生的声音发射进行分析和数值分析,可能超过保证的噪声发射极限。根据套管的变形,可以计算出发电机表面的法向速度。考虑到相应的对称性,就二阶汉克函数而言,发生器外部声压的解析解是圆形的。法向速度或发生器表面为声压提供了所需的边界条件,并确定了压力振荡的幅度。对于数值模拟,非线性二维Euler方程以扰动形式表述为低马赫数计算航空声学(CAA)。空间导数通过经典的六阶中心内部方案和三阶边界方案离散化。基于特性的人工压缩方法(ACM)滤波器可抑制杂散的高频振荡。时间导数通过经典的四阶Runge-Kutta方法近似。数值结果与解析解非常吻合。

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