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Computation of aeolian tone from a circular cylinder using source models

机译:使用源模型计算圆柱的风音。

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The generation of aeolian tones from a two-dimensional circular cylinder situated in a uniform cross-flow is investigated. The major emphasis here is placed on identifying the important noise generation mechanisms. Acoustic-viscous splitting techniques are utilized to compute modelled acoustic source terms and their corresponding acoustic fields. The incompressible Reynolds averaged Navier- Stokes equation is used to compute the near-field viscous flow solution, from which modelled acoustic source terms are extracted based on an approximation to the Lighthill's stress tensor. Acoustic fields are then computed with an acoustic solver to solve the linearized Euler equations forced by the modelled source terms. Computations of the acoustic field based on the approximated Lighthill's stress tensor are shown to be in good agreement with those computed from the surface dipole sources obtained using Curie's solution to the acoustic analogy. It is shown in this paper that the stress tensor source term in the streamwise direction makes a comparable, but slightly larger contribution to the overall radiated field, compared with that due to the stress tensor in the direction normal to the mean flow. In addition, it is shown that shear sources, which arise due to the interaction between the fluctuating velocity and the background steady mean velocity, make the greatest contribution to the acoustic field, while the self-noise sources, which represents the interaction between the fluctuating velocities, is shown to be comparably negligible.
机译:研究了以均匀错流的二维圆柱体产生的风音。这里的主要重点是确定重要的噪声生成机制。利用声-粘声分裂技术来计算建模的声源项及其对应的声场。使用不可压缩的雷诺平均Navier-Stokes方程来计算近场粘性流解,并基于对Lighthill应力张量的近似值,从中提取建模的声源项。然后使用声学求解器计算声场,以求解由建模源项强制产生的线性化Euler方程。结果表明,基于近似的Lighthill应力张量的声场计算与使用居里解答进行声学模拟得到的表面偶极子声源的计算结果非常吻合。本文表明,与应力流张量源项在垂直于平均流方向上的影响相比,在流向的应力张量源项对整个辐射场的贡献可比,但稍大。此外,还表明,由于波动速度和背景稳态平均速度之间的相互作用而产生的剪切源对声场的贡献最大,而自噪声源则代表了波动之间的相互作用。速度显示为可忽略不计。

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