安装效应对螺旋桨纯音噪声的影响

Installation effects on propeller tone noise

  • 摘要: 安装效应对螺旋桨噪声特性有显著影响。本文以简化机翼-螺旋桨模型为研究对象,针对起飞工况,采用非定常数值模拟手段,获得了不同安装位置总噪声特性、部件噪声特性以及关键流场特征,分析了安装效应对螺旋桨纯音噪声产生及传播特性的影响。结果表明,安装效应使螺旋桨推力增大、最大纯音噪声增加、远场最大噪声方向朝上游移动。桨盘与机翼重合的区域是尾流干扰影响区域,尾流-机翼干扰噪声水平受马赫数、尾流涡量和扫掠范围等因素影响。当机翼前缘位于桨盘平面水平距离L = 0.5D、垂直距离H>0.3D区域时,此种安装位置不仅能够明显降低安装效应影响,同时还可使螺旋桨推力增加1%。本研究明确了安装位置对螺旋桨纯音噪声的影响规律,可为螺旋桨飞机动力装置的低噪声布局设计提供参考。

     

    Abstract: The installation effects impose a distinct influence on the propeller noise characteristics. A simplified wing-propeller model with diverse installation positions were studied using unsteady numerical simulations to obtain the overall noise characteristics, component noise characteristics and key flow features under the take-off condition. The influence of installation locations on the propeller tone noise generation and radiation were analyzed. The results show that the installation effects lead to an increase of the thrust and maximum tone noise, and the direction of maximum tone noise moved upstream. The overlaid area between the propeller and the wing is the main region of wake-wing interaction, where the noise level is affected by Mach number, wake vorticity, wake-sweep region and so on. When the leading edge of the wing lies in the region with a horizontal distance of L = 0.5D and a vertical distance of H>0.3D, the installation effects can be weakened dramatically while the thrust can be still increased by 1%. The patterns of installation effect on propeller tone noise are identified from this research, which can be referred for low noise design of prop airplane.

     

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