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首页> 外文期刊>Journal of marine science and technology >A coupled potential-viscous flow approach for the prediction of propeller effective wakes in oblique flow
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A coupled potential-viscous flow approach for the prediction of propeller effective wakes in oblique flow

机译:耦合势-粘性流方法预测斜流中螺旋桨的有效尾流

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摘要

This paper presents a method for the estimation of propeller effective wakes in oblique flows. It extends to inclined flows an approach based on correction factors previously developed for the estimation of effective wakes in straight flow. The approach converts propeller-induced velocities approximately predicted via potential flow theory into viscous-induced velocities on the basis of a viscous flow RANS analysis. The correction factors are a function of both the radial and angular positions on the propeller disk. They are calculated for a reference advance number and work accurately in a neighboring continuous region of advance numbers. This procedure allows controlling one of the errors present in the calculation of effective wakes, namely the error derived from coupling a potential flow method for the representation of the propeller with a RANS solver. Consequently, it permits calculating the effective wake more precisely in off-design conditions, reducing the CPU time, and therefore, enlarging its range of applicability to situations like those resulting from ship maneuvering. The approach is tested for a podded propulsor unit in oblique flow.
机译:本文提出了一种估算斜流中螺旋桨有效尾流的方法。它扩展到倾斜流,这是一种基于先前为校正直流中有效尾流而开发的校正因子的方法。该方法在粘性流RANS分析的基础上,将通过势流理论近似预测的螺旋桨感应速度转换为粘性感应速度。校正系数是螺旋桨盘上径向位置和角度位置的函数。它们是为参考预付款编号计算的,并在预付款编号的相邻连续区域中准确地工作。该程序允许控制在有效尾流的计算中存在的误差之一,即,通过将用于螺旋桨表示的潜在流动方法与RANS求解器耦合而得出的误差。因此,它允许在偏离设计的条件下更精确地计算有效尾流,从而减少了CPU时间,因此,将其适用范围扩大到了诸如由船舶操纵引起的情况。该方法已经过倾斜倾斜的推进器单元的测试。

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