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首页> 外文期刊>International Journal of Aeroacoustics >Far-field sound radiation due to an installed open rotor
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Far-field sound radiation due to an installed open rotor

机译:由于安装了开放式转子而产生的远场声辐射

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摘要

Future single rotation propeller and contra-rotating advanced open rotor concepts promise a significant fuel efficiency advantage over current generation turbofan engines. The development of rotors which produce a minimum level of noise is a critical technical issue which needs to be resolved in order for these concepts to become viable aircraft propulsors. Noise and emissions are subject to stringent legislative requirements, thus accurate models are required in order to predict the noise radiated from aircraft engines. In this article, the development of a theoretical model to predict noise levels of an installed open rotor is reported. First a canonical problem is examined: how to predict the pressure field produced by a rotating ring of point sources adjacent to a rigid cylinder. Analytic expressions for the far-field pressure from a rotating ring of single-frequency monopole and dipole point sources, located near an infinitely long rigid cylinder, immersed in a constant axial mean flow, are explicitly formulated. Illustrative results show how the far-field pressure is affected by varying the source rotational direction, source location and source radius. Next the solution of the canonical problem is utilized to formulate a more advanced model to predict the noise due to an installed open rotor. In this model, the rotor noise sources are represented by a distribution of rotating sources. The adjacent aircraft fuselage is modeled by the rigid cylinder, and the effect of the fuselage boundary layer and other steady distortions are neglected. Also neglected is the scattering from other surfaces such as the pylon, wing and centerbody. This distributed source model can be used to calculate the effect of scattering of open rotor noise by an adjacent cylindrical fuselage. The model can be used to calculate both rotor-alone tones and tones produced by periodic unsteady loading on the rotor blades. Practical examples are provided which show how the effect of blade rotational direction and propeller location relative to the fuselage affect the sound produced by the interaction of a pylon wake with a rotor in a pusher configuration.
机译:未来的单旋转螺旋桨和反向旋转先进的开放旋翼概念有望在燃油效率上超越当前的涡轮风扇发动机。产生最小噪声的旋翼的发展是一个关键的技术问题,需要解决这些问题才能使这些概念成为可行的飞机推进器。噪声和排放物受到严格的法律要求,因此需要精确的模型来预测飞机发动机辐射的噪声。在本文中,报告了预测已安装的敞开式转子的噪声水平的理论模型的开发。首先,研究一个典型的问题:如何预测与刚性圆柱体相邻的点源的旋转环所产生的压力场。明确提出了位于无限长的刚性圆柱附近,浸入恒定轴向平均流量的单频单极和偶极点源旋转环的远场压力的解析表达式。说明性结果显示了通过改变源旋转方向,源位置和源半径如何影响远场压力。接下来,利用规范问题的解决方案来制定更高级的模型,以预测由于安装了开放式转子而产生的噪声。在此模型中,转子噪声源由旋转源的分布表示。相邻的飞机机身由刚性圆柱体建模,而忽略了机身边界层和其他稳定变形的影响。同样被忽略的是其他表面(例如塔架,机翼和中心体)的散射。此分布式源模型可用于计算相邻圆柱形机身对转子旋转噪声的散射影响。该模型可用于计算单独的转子音和转子叶片上的周期性非稳态载荷产生的音。提供了一些实际示例,这些示例显示了叶片旋转方向和螺旋桨相对于机身的位置的影响如何影响由塔架尾翼与推进器配置中的转子相互作用产生的声音。

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