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Hydrodynamic performance of an autonomous underwater glider with a pair of bioinspired hydro wings-A numerical investigation

机译:带有一对生物启发式水翼的自主水下滑翔机的水动力性能-数值研究

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摘要

A conceptual design of autonomous underwater glider (AUG) is introduced, with a pair of bio-inspired hydro wings undergoing travelling wave motion. Hydrodynamic performance of current AUG is investigated by numerically solving the incompressible viscous Navier Stokes equations of its surrounding flow coupling with the immersed boundary method to capture the moving boundaries. The force balance along the stream direction is guaranteed by adjusting the kinematic parameters of the travelling wave motion, thus the cruise state of the AUG with a constant velocity can be achieved. The propulsive efficiency under cruise state is therefore directly and well defined. The effects of kinematic parameters on propulsive performance are investigated, and the non-dimensional Strouhal number, as a combination of these kinematic parameters, turns to be a dominant parameter of the propulsive efficiency. There is an optimum range of Strouhal number, in which the AUG achieves its maximum efficiency. The results obtained in current study can provide certain technical supports for the design and development of small submersible vehicle.
机译:介绍了自主水下滑翔机(AUG)的概念设计,其中有一对受到生物启发的水翼经过行波运动。通过使用浸入边界法捕获流动边界,通过数值求解其周围流的不可压缩粘性Navier Stokes方程,研究了当前AUG的水动力性能。通过调节行波运动的运动学参数可以保证沿水流方向的力平衡,因此可以实现AUG的恒定速度巡航状态。因此,在巡航状态下的推进效率是直接且明确定义的。研究了运动学参数对推进性能的影响,作为这些运动学参数的组合,无量纲斯特劳哈尔数成为推进效率的主要参数。有一个最佳的Strouhal数范围,其中AUG达到了最大效率。本研究获得的结果可为小型潜水艇的设计和开发提供一定的技术支持。

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