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Active control of a distributed-parameter structure using vortex power flow confinement

机译:涡流潮流约束对分布参数结构的主动控制

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This paper considers the active power flow control of a distributed-parameter planar structure, with particular emphasis on a vortex power flow which has the potential to confine the vibrational power into a restricted area of the structure. Without letting the vibrational power, a cause of exciting structural modes, disperse into the structure, control of the structural response can be achieved. This paper begins by deriving the necessary condition for producing a vortex power flow in the vicinity of a disturbance point force at an arbitrary exciting frequency. Then, with a wave visualization system newly developed, it becomes possible to observe the wave propagation (the vortex power flow) taking place in the structure. In order to investigate the contribution of structural modes to the vortex power flow configuration, an energy stream function as well as a vorticity function is derived in a general form. By using these functions, the generation mechanism of a vortex power flow actively induced around a disturbance force location is quantitatively studied.
机译:本文考虑了分布参数平面结构的有功功率流控制,特别强调了涡流功率流,它有可能将振动功率限制在结构的受限区域内。在不让振动功率这一令人兴奋的结构模式的原因扩散到结构中的情况下,可以实现对结构响应的控制。本文首先推导在任意激振频率下在扰动点力附近产生涡流的必要条件。然后,利用新开发的波浪可视化系统,可以观察结构中发生的波浪传播(涡流)。为了研究结构模式对涡流潮流配置的贡献,以一般形式导出了能量流函数和涡度函数。通过使用这些功能,定量研究了在干扰力位置周围主动感应产生的涡流的产生机理。

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