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An investigation on the effect of the wall treatments in RANS simulations of model and full-scale marine propeller flows

机译:墙面处理在模型和全级船舶螺旋桨流量思路中的影响研究

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A numerical analysis is carried out for the marine propellers in open water conditions to investigate the effect of the wall treatments in model and full scale. The standard wall function to apply the low of the wall and the two layer zonal model to calculate the whole boundary layer for a transition phenomenon are used with one turbulence model. To determine an appropriate distance of the first grid point from the wall when using the wall function, a formula based on Reynolds number is suggested, which can estimate the maximumy+?satisfying the logarithmic law. In the model scale, it is confirmed that a transition calculation is required for a model scale propeller with low Reynolds number that the transient region appears widely. While in the full scale, the wall function calculation is recommended for efficient calculations due to the turbulence dominant flow for large Reynolds number.
机译:在开放水条件下对海洋螺旋桨进行数值分析,以研究墙面处理在模型和满量程中的影响。用一个湍流模型一起使用施加墙壁的低壁的标准壁函数和两个层Zonal模型来计算过渡现象的整个边界层。为了在使用壁函数时从墙壁确定第一栅极点的适当距离,建议了一种基于雷诺数的公式,这可以估计最大限度的+?满足对数律。在模型刻度中,确认模型刻度螺旋桨具有低雷诺数所需的转换计算,即瞬态区域显得广泛。虽然在满量程的情况下,由于大型雷诺数的湍流主导流量,建议墙壁函数计算。

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