Numerical Analysis of Surface-Piercing Propellers

Y. L. Young, S. Kinnas
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引用次数: 9

Abstract

A 3-D low-order boundary element method, PROPCAV, has been extended to predict unsteady hydrodynamic forces and ventilation patterns on a surface-piercing propeller. The negative image method is used to account for the effect of the free surface. The ventilated cavity patterns at every time step is determined iteratively by satisfying both the kinematic and the dynamic boundary conditions. The detachment locations of the ventilated cavities are determined iteratively by applying a condition similar to the Villat-Brillouin smooth detachment criterion. Finally, the coupling of boundary element method with a finite element method to include hydroelastic effects is presented.
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穿面螺旋桨的数值分析
将三维低阶边界元方法PROPCAV扩展到非定常穿面螺旋桨的水动力和通气模式预测中。采用负像法来解释自由表面的影响。通过同时满足运动边界条件和动力边界条件,迭代确定各时间步长的通风空腔模式。通过应用类似于Villat-Brillouin光滑分离准则的条件来迭代确定通风腔的分离位置。最后,提出了边界元法与有限元法的耦合,以考虑水弹性效应。
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