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Optimal design of dynamic absorbers on vibration and noise control of the fuselage

机译:机身振动与噪声控制的动力吸收器优化设计

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Optimum design of dynamic absorbers for reducing the vibration and the interior noise of an aircraft's fuselage is studied. Herein, a thin, elastic cylindrical shell is adopted as a simple model of the fuselage. The sound source of the noise in the acoustic field comes from the vibration of the shell. Several dynamic absorbers are then attached to the shell for vibration and noise control. The vibration of the shell and its interior sound pressure, caused by the propellers or the engines are formulated. Optimum design of the absorbers is studied for obtaining the minimum vibration of the fuselage or the minimum noise level in the cylindrical cavity. From the numerical results, the absorbers are found to be effective for vibration and noise control of the fuselage. Some general guidelines on optimum absorber design are also offered in conclusion.
机译:研究了用于减少飞机机身振动和内部噪声的动力吸收器的优化设计。在此,采用薄的弹性圆柱壳作为机身的简单模型。声场中噪声的声源来自外壳的振动。然后将几个动态吸收器连接到外壳上,以控制振动和噪音。确定了由螺旋桨或发动机引起的壳体振动及其内部声压。研究了吸收器的优化设计,以获得机身的最小振动或圆柱腔中的最小噪音水平。根据数值结果,发现吸收器对于机身的振动和噪声控制是有效的。最后,还提供了一些有关最佳吸收器设计的一般准则。

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