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Hybrid passive/active inertial actuators to attenuate the structural response of a submerged hull

机译:混合被动/有源惯性执行器,以衰减淹没船体的结构响应

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This paper theoretically investigates the application of tuned vibration absorbers and hybrid passive/active inertial actuators to reduce the vibrational responses of plates and shells. The passive/active actuators are initially applied to a simple plate. A model of a submerged hull consisting of a ring stiffened finite cylinder with bulkheads and external fluid loading is then considered. The fluctuating forces from the propeller result in excitation of the low frequency global hull modes. Inertial actuators and tuned vibration absorbers are located at each end of the hull and in circum ferential arrays to reduce the hull structural response at its axial resonances. The control performance of the hybrid passive/active inertial actuator, where the passive component is tuned to a structural resonance, is compared to the attenuation achieved by a fully passive tuned vibration absorber. This work shows the potential of using hybrid passive/active inertial actuators to attenuate the global structural responses of a submerged vessel.
机译:本文理论上研究了调谐振动吸收器和混合动力量/有源惯性致动器的应用,以减少板和壳的振动响应。被动/有源致动器最初施加到简单的板上。然后考虑由带有舱壁和外部流体载荷的环形加强有限圆柱组成的潜水船体的模型。来自螺旋桨的波动力导致低频全球船体模式的激励。惯性致动器和调谐振动吸收器位于船体的每个端部,并且在轴承阵列中,以减小其轴向共振处的船体结构响应。混合无源/有源惯性致动器的控制性能,其中被动部件被调谐到结构谐振,与通过完全被动调谐振动吸收器实现的衰减进行比较。这项工作表明了使用混合动力车无源/有源惯性致动器来衰减淹没容器的全局结构反应的潜力。

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