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A BEM for the prediction of free surface effects on cavitating hydrofoils

机译:预测空化翼面自由表面影响的边界元法

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摘要

In this paper, a boundary element method (BEM) for cavitating hydrofoils moving steadily under a free surface is presented and its performance is assessed through systematic convergence studies, comparisons with other methods, and existing measurements. The cavitating hydrofoil part and the free surface part of the problem are solved separately, with the effects of one on the other being accounted for in an iterative manner. Both the cavitating hydrofoil surface and the free surface are modeled by a low-order potential based panel method using constant strength dipole and source panels. The induced potential by the cavitating hydrofoil on the free surface and by the free surface on the hydrofoil are determined in an iterative sense and considered on the right hand side of the discretized integral equations. The source strengths on the free surface are expressed by applying the linearized free surface conditions. In order to prevent upstream waves the source strengths from some distance in front of the hydrofoil to the end of the truncated upstream boundary are enforced to be equal to zero. No radiation condition is enforced at the downstream boundary or at the transverse boundary for the three-dimensional case. First, the BEM is validated in the case of a point vortex and some convergence studies are done. Second, the BEM is applied to 2-D hydrofoil geometry both in fully wetted and in cavitating flow conditions and the predictions are compared to those of other methods and of the measurements in the literature. The effects of Froude number, the cavitation number and the submergence depth of the hydrofoil from free surface are discussed. Then, the BEM is validated in the case of a 3-D point source. The effects of grid and of the truncated domain size on the results are investigated. Lastly, the BEM is applied to a 3-D rectangular cavitating hydrofoil and the effect of number of iterations and the effect of Froude number on the results are discussed.
机译:在本文中,提出了一种使空翼在自由表面下稳定运动的空化作用的边界元方法(BEM),并通过系统的收敛性研究,与其他方法的比较以及现有的测量方法对其性能进行了评估。该问题的空化水翼部分和自由表面部分是分别解决的,其中一个和另一个的影响是以迭代的方式解决的。空化水翼面和自由面均通过基于低阶电位的面板方法(使用恒定强度偶极子和源极面板)进行建模。由空化表面上的空化翼面和水翼上的自由面所产生的感应电势以迭代方式确定,并在离散积分方程的右侧考虑。自由表面上的源强度通过应用线性化的自由表面条件来表示。为了防止上游波浪,从水翼片前面到截断的上游边界末端的一定距离的源强度被强制等于零。对于三维情况,在下游边界或横向边界处没有强制辐射条件。首先,在点涡旋的情况下验证了边界元法,并进行了一些收敛性研究。其次,在完全润湿和空化的流动条件下,将BEM应用于二维水翼几何,并将预测结果与其他方法和文献中的测量结果进行比较。讨论了弗洛德数,空化数和水翼从自由表面浸没深度的影响。然后,在3-D点源的情况下验证BEM。研究了网格和截断域大小对结果的影响。最后,将边界元法应用于3-D矩形空化翼型,并讨论了迭代次数和弗洛德数对结果的影响。

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