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SPIV measurements and URANS simulations on the inlet velocity distribution for a waterjet-propelled ship with stabiliser fins

机译:带有稳定鳍的喷水推进船的进水速度分布的SPIV测量和URANS模拟

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This study focused on the inlet velocity profile of a waterjet-propelled ship model during bare hull and waterjet-operating conditions. The ship model used in the analysis incorporates four mounted waterjets and two stabiliser fins. A combined experimental and numerical investigation was conducted to explore the complex viscous flow fields with high turbulence around the hull. A vehicle-mounted underwater Stereo Particle Image Velocimetry (SPIV) system was employed to measure the inlet velocity profile, and numerical simulations of the unsteady multiphase flow were also conducted considering the free-surface effects. The results indicate that the unsteady Reynolds-Averaged Navier-Stokes (URANS) simulations correctly reflected the pitch and heave trends and accurately captured the characteristics of the flow field. The inclusion of stabiliser fins induced shedding vortices thereby affecting the inlet velocity distribution as these vortices are convected downstream. The comparison of the experimental and numerical analyses of the inlet velocity distributions demonstrated that the experimental scatter varies with speed and strong pulsations exist near the interface between the mainstream and turbulent boundary layer. Very good correspondence was observed for the energy/momentum velocity coefficients, which verified the quality of the combined research quantitatively.
机译:这项研究的重点是在裸露船体和水刀操作条件下,水刀推进船模型的入口速度分布。分析中使用的船舶模型包括四个安装的水刀和两个稳定器鳍片。进行了组合的实验和数值研究,以探索船体周围高湍流的复杂粘性流场。车载水下立体颗粒图像测速(SPIV)系统用于测量入口速度分布,并且还考虑了自由表面效应,对非稳态多相流进行了数值模拟。结果表明,不稳定的雷诺平均Navier-Stokes(URANS)仿真能够正确反映俯仰和升沉趋势,并准确地捕获流场的特征。包含稳定剂鳍片会引起涡旋脱落,从而影响入口速度分布,因为这些涡旋在下游对流。入口速度分布的实验和数值分析的比较表明,实验散射随速度变化,并且主流和湍流边界层之间的界面附近存在强烈的脉动。能量/动量速度系数具有很好的对应性,定量地验证了组合研究的质量。

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