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首页> 外文期刊>CEAS Aeronautical Journal >Numerical assessment of the vibration control effects of porous liners on an over-the-wing propeller configuration
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Numerical assessment of the vibration control effects of porous liners on an over-the-wing propeller configuration

机译:机翼螺旋桨构型上多孔衬套振动控制效果的数值评估

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An over-the-wing position of propellers comes with noise shielding and significantly reduced sound emission to the ground. A drawback of this configuration may be the additional impact due to the passing propeller blades on the airfoil's surface inducing structure-borne sound in the wing. This structural sound propagates within the wing and the fuselage and can radiate further into the cabin as airborne sound. In order not to trade the advantage of reduced noise transmission to the ground with higher sound pressure levels within the cabin, a remedy is proposed, which consists in placing a poroelastic liner on the wing's surface below the rotor where the blade tips move closely to the airfoil's skin. In this work, a numerical approach to assess the effects of porous liners for an over-the-wing propeller configuration is presented. A simplified generic channelwing structure is exposed to pressure fluctuations on its surface which are caused by an over-the-wing propeller. Porous liners are applied to the wing's surface where the blade tips pass in close proximity. Structural vibrations are determined using the finite element method in frequency domain. Surface data is obtained from CFD computations. The porous material is represented by Biot's theory.
机译:螺旋桨位于机翼上方的位置带有噪音屏蔽,可大大减少向地面的声音发射。这种结构的缺点可能是由于螺旋桨叶片在翼型表面上经过而引起的额外冲击,从而在机翼中引起结构声。这种结构声音会在机翼和机身内部传播,并可能以空中声音的形式进一步辐射到机舱中。为了不具有在机舱内以较高的声压级降低降到地面的噪音的优点,提出了一种解决方法,该方法包括在转子下方的机翼表面上放置一个多孔弹性衬套,在该表面上桨叶尖端向靠近机翼的皮肤。在这项工作中,提出了一种数值方法来评估机翼螺旋桨配置中多孔衬套的效果。简化的通用通道机翼结构暴露于由机翼螺旋桨引起的表面压力波动。多孔衬里涂在机翼表面,靠近叶片尖端。使用频域中的有限元方法确定结构振动。表面数据是从CFD计算中获得的。多孔材料由毕奥特的理论表示。

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