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A fast non-iterative numerical algorithm to predict unsteady partial cavitation on hydrofoils

机译:一种快速非迭代数值算法来预测水翼上的非定常局部空化

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摘要

A new algorithm to predict partial sheet cavity behavior on hydrofoils is proposed. The proposed algorithm models the unsteady partial cavitation using Boundary Element Method (BEM). In the proposed method the spatial iterative scheme is removed by means of a new approach determining the instantaneous cavity length. This iterative scheme is required in conventional algorithms to obtain the cavity length at each time step. Performance of the new algorithm for various unsteady cavitating flows with different reduced frequencies, cavitation numbers, hydrofoil geometries and inflow conditions are investigated. Comparison between the obtained results using the proposed method and those of conventional ones indicates that the present algorithm works well with sufficient accuracy. Moreover, it is shown that the proposed method is computationally more efficient than the conventional one for unsteady sheet cavitation analysis on hydrofoils.
机译:提出了一种预测水翼局部板腔行为的新算法。所提出的算法使用边界元方法(BEM)对不稳定的部分空化进行建模。在提出的方法中,空间迭代方案通过确定瞬时空腔长度的新方法来消除。在常规算法中,需要这种迭代方案来获得每个时间步长的腔体长度。研究了新算法对各种具有不同降低频率,空化数,水翼几何形状和流入条件的非定常空化流的性能。使用所提出的方法与传统方法所获得的结果之间的比较表明,本算法以足够的精度很好地工作。此外,结果表明,所提出的方法在计算方法上比常规方法在水翼上的非稳态薄板气穴分析方面更为有效。

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