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Numerical simulation of tonal fan noise of computers and air conditioning systems

机译:计算机和空调系统音调风扇噪声的数值模拟

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摘要

Current approaches to fan noise simulation are mainly based on the Lighthill equation and socalled aeroacoustic analogy, which are also based on the transformed Lighthill equation, such as the wellknown FW-H equation or the Kirchhoff theorem. A disadvantage of such methods leading to significant modeling errors is associated with incorrect solution of the decomposition problem, i.e., separation of acoustic and vortex (pseudosound) modes in the area of the oscillation source. In this paper, we propose a method for tonal noise simulation based on the mesh solution of the Helmholtz equation for the Fourier transform of pressure perturbation with boundary conditions in the form of the complex impedance. A noise source is placed on the surface surrounding each fan rotor. The acoustic fan power is determined by the acoustic-vortex method, which ensures more accurate decomposition and determination of the pressure pulsation amplitudes in the near field of the fan.
机译:当前的风扇噪声模拟方法主要基于Lighthill方程和所谓的航空声学类比,它们也基于转换后的Lighthill方程,例如著名的FW-H方程或Kirchhoff定理。这种方法的缺点是导致明显的建模误差,这与分解问题的正确解决有关,即在震源区域内分离出声学和涡旋(伪声)模。在本文中,我们提出了一种基于Helmholtz方程的网格解的色调噪声模拟方法,用于以边界条件形式以复阻抗形式对压力扰动进行傅立叶变换。噪声源放置在每个风扇转子周围的表面上。声学风扇功率通过声学涡流方法确定,该方法可确保更精确地分解和确定风扇近场中的压力脉动幅度。

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