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A study of unsteady hydrodynamic effects in the stern area of river cruisers in shallow water

机译:浅水河巡洋舰船尾区非定常水动力效应研究

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The aim of the presented research was to determine, how the fairway depth restriction can influence the hydrodynamic exciters of ship stern vibration. A series of computations of the flow around the inland cruise ship was conducted using the hybrid URANS/LES turbulence modelling methods in conjunction with the synthetic turbulence generation. The computational method was tested for the prediction of the wake of an inland ship in model scale and afterwards applied for a typical river cruiser geometry. A range of the depth-to-draft ratios and the drift angles was studied. The flow around the cruise ship was simulated both with and without propulsors. Based on the simulations, the statistical analysis of the longitudinal velocity field in the propeller plane, thrust fluctuations and pressure pulses on the hull was performed. It was shown that all the hydrodynamic sources of stern vibration are intensified when the ship enters the restricted waters. Under certain conditions, the velocity fluctuations can reach 25% of the ship speed, the thrust fluctuations can be as high as 6.5% of the mean and the amplitude of the pressure pulses can increase to 8 kPa. Analysis of the cavitation inception regions showed that the risk of cavitation can increase in shallow water.
机译:本研究的目的是确定航道深度限制如何影响船尾振动的水动力激励器。使用混合的URANS / LES湍流建模方法和合成湍流生成,对内陆游轮周围的流量进行了一系列计算。测试了该计算方法,以模型规模预测内河船的尾流,然后将其应用于典型的河面巡洋舰几何形状。研究了深度-草案比率和漂移角的范围。在有和没有推进器的情况下,都模拟了游轮周围的流动。基于仿真,对螺旋桨平面内的纵向速度场,船体上的推力波动和压力脉冲进行了统计分析。结果表明,当船舶进入受限水域时,船尾振动的所有水动力源都将增强。在某些条件下,速度波动可以达到船舶速度的25%,推力波动可以高达平均值的6.5%,压力脉冲的幅度可以增加到8 kPa。对空化开始区域的分析表明,在浅水中空化的风险会增加。

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