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Improved Finite Element Modeling of the Turbofan Engine Inlet Radiation Problem

机译:涡轮风扇发动机进气口辐射问题的改进有限元建模

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摘要

Improvements have been made in the finite element model of the acoustic radiated field from a turbofan engine inlet in the presence of a mean flow. The problem of acoustic radiation from a turbofan engine inlet is difficult to model numerically because of the large domain and high frequencies involved. A numerical model with conventional finite elements in the near field and wave envelope elements in the far field has been constructed. By employing an irrotational mean flow assumption, both the mean flow and the acoustic perturbation problem have been posed in an axisymmetric formulation in terms of the velocity potential; thereby minimizing computer storage and time requirements. The finite element mesh has been altered in search of an improved solution. The mean flow problem has been reformulated with new boundary conditions to make it theoretically rigorous. The sound source at the fan face has been modeled as a combination of positive and negative propagating duct eigenfunctions. Therefore, a finite element duct eigenvalue problem has been solved on the fan face and the resulting modal matrix has been used to implement a source boundary condition on the fan face in the acoustic radiation problem. In the post processing of the solution, the acoustic pressure has been evaluated at Gauss points inside the elements and the nodal pressure values have been interpolated from them. This has significantly improved the results. The effect of the geometric position of the transition circle between conventional finite elements and wave envelope elements has been studied and it has been found that the transition can be made nearer to the inlet than previously assumed.
机译:在存在平均流的情况下,对涡轮风扇发动机进气口的声辐射场的有限元模型进行了改进。涡轮风扇发动机进气口的声辐射问题由于涉及到较大的范围和较高的频率,因此很难进行数值建模。建立了具有近场常规有限元和远场波包络要素的数值模型。通过采用非旋转平均流量假设,就速度势而言,平均流量和声扰动问题都已在轴对称公式中提出。从而最大程度地减少了计算机存储空间和时间要求。为寻求改进的解决方案,已更改了有限元网格。平均流量问题已通过新的边界条件重新制定,以使其在理论上更为严格。风扇表面的声源已建模为正传播管道和负传播管道的本征函数的组合。因此,已经解决了在风扇面上的有限元导管特征值问题,并且所得到的模态矩阵已用于在声辐射问题中在风扇面上实施源边界条件。在解决方案的后处理中,已在单元内部的高斯点处评估了声压,并从它们内插了节点压力值。这大大改善了结果。已经研究了传统有限元和波包络要素之间过渡圆的几何位置的影响,并且发现与先前假定的相比,过渡可以更靠近入口。

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