首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >DYNAMIC BEHAVIOUR OF THE LOADS OF PODDED PROPELLERS IN WAVES: EXPERIMENTAL AND NUMERICAL SIMULATIONS
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DYNAMIC BEHAVIOUR OF THE LOADS OF PODDED PROPELLERS IN WAVES: EXPERIMENTAL AND NUMERICAL SIMULATIONS

机译:波浪中螺旋桨载荷的动态行为:实验和数值模拟

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The paper focuses on the hydrodynamic flow around a ship with pods in waves and compares the results of an experimental campaign with numerical simulations conducted during the EU-funded STREAMLINE project. It was the first project for which the effect of waves on cavitation and ventilation was explored in both experimental and numerical ways for a ship with pods. The measurements were carried out in MARIN's Depressurized Wave Basin (DWB) with a fully instrumented podded ship model, in sailing condition, in waves and depressurised conditions. In this way, the correct representation of cavitation and possible ventilation bubbles and vortices is ensured, resulting in a correct physical behaviour. The discretisation of the Reynolds-Averaged Navier-Stokes Equations (RANSE) is based on the unstructured finite-volume flow solver ISIS-CFD developed by ECN-CNRS. An essential feature for full RANSE simulations with this code is the use of a sliding grid technique to simulate the real propeller rotating behind a ship hull. The computational study in operational service conditions considered here has been conducted to evaluate the instantaneous flow distribution around the podded propellers and to analyse and to compare the unsteady behaviour of the forces induced by the rotating propeller in waves with the measurements from omnidirectional propeller loads as well as the blade forces and moments. The computational study has been done in model and full scale to evaluate the scale effects.
机译:本文着重研究了波状豆荚船周围的水动力流动,并将实验活动的结果与欧盟资助的STREAMLINE项目进行的数值模拟进行了比较。这是第一个以实验和数值方式研究波浪对装有吊舱的船舶的气蚀和通风影响的项目。测量是在MARIN的减压海盆(DWB)中,在航行状态,海浪和减压条件下,使用配备齐全的荚装船模型进行的。以这种方式,确保了对气蚀以及可能的通气气泡和涡流的正确表示,从而导致了正确的物理行为。雷诺平均Navier-Stokes方程(RANSE)的离散化基于ECN-CNRS开发的非结构化有限体积流动求解器ISIS-CFD。使用此代码进行完全RANSE仿真的基本功能是使用滑动网格技术来仿真在船体后面旋转的真实螺旋桨。进行了此处考虑的运行服务条件下的计算研究,以评估有荚螺旋桨周围的瞬时流量分布,并分析和比较旋转螺旋桨在波浪中产生的力的非稳态行为以及全向螺旋桨载荷的测量结果。作为叶片的力和力矩。已经在模型和全比例尺上进行了计算研究,以评估比例尺效果。

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