Experimental and Statistical Energy Analysis of the Structure-borne Noise in a Helicopter Cabin

R. D. Sante, M. Vanali, E. Manconi, A. Perazzolo
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Abstract

In this work, the mechanical power transferred from the main gearbox to the cabin of a helicopter is obtained experimentally and used as an input to the vibroacoustic model of the fuselage for interior noise prediction. The estimation of the transmitted mechanical power is based on the experimental evaluation of the coupled mechanical mobility and in-flight accelerations measured at the points connecting the main gearbox to the fuselage, i.e. the antitorque plate and struts. The predicted values, together with the airborne noise sources (upper deck cavity noise and aerodynamic excitation due to the turbulent boundary layer on the fuselage skin) are then fed into the vibroacoustic model of the fuselage/cabin, which is obtained using a Statistical Energy Analysis (SEA) approach. The reliability of the approach is finally demonstrated by comparing the SEA simulation results and in-flight noise measurements in terms of sound pressure level in the passenger cabin compartment.
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直升机机舱结构噪声的实验与统计能量分析
在这项工作中,实验获得了从主齿轮箱传递到机舱的机械动力,并将其作为机身振动声学模型的输入,用于内部噪声预测。传递的机械功率的估计是基于对主齿轮箱与机身连接点(即抗扭矩板和支柱)的耦合机械机动性和飞行加速度的实验评估。然后将预测值与机载噪声源(上甲板空腔噪声和机身蒙皮湍流边界层引起的气动激励)一起输入到机身/机舱的振动声学模型中,该模型使用统计能量分析(SEA)方法获得。最后,通过对比SEA仿真结果和客舱舱内声压级的飞行噪声测量结果,验证了该方法的可靠性。
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