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Reducing the drag of underwater vehicle in the shape of a small boat by using piezoelectric transducers

机译:使用压电传感器减少小船形状的水下车辆的阻力

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Reducing the flow resistance of moving underwater vehicles can improve their performance and reduce the energy consumption.This paper presents a method to interfere the turbulent boundary layer for achieving the drag reduction by using piezoelectric transducers.The transducer produces ultrasonic traveling waves vibration near the hull surface.The working frequency and the maximum vibration amplitude of the transducers placed in different locations were obtained through the structural dynamic analysis.The fluid-solid coupling simulations were performed to explore the reduction drag performance.The simulation results show that better drag reduction performance can be obtained when the angle between the vibration direction of the piezoelectric transducer and the flow direction is 67.62°.The method of using piezoelectric transducer vibration for drag reduction is proved to be feasible.The present work provides a valuable reference for the study of drag reduction of underwater vehicles.
机译:降低移动水下车辆的流动阻力可以提高它们的性能并降低能量消耗。本文提出了一种干扰湍流边界层来实现用于通过使用压电传感器实现减阻的方法。换能器在船体表面附近产生超声波行驶波振动。通过结构动力学分析获得了换能器的工作频率和换能器的最大振动幅度。进行流体 - 固体耦合模拟以探索减少拖曳性能。仿真结果表明,仿真结果表明,可以更好地减少减少性能当压电换能器的振动方向与流动方向之间的角度为67.62°时获得。证明了使用压电换能器振动的方法可行。目前的工作为减少阻力进行了研究提供了有价值的参考水下车辆。

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