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Escort Tug Performance Prediction Using Computational Fluid Dynamics

机译:使用计算流体力学的护航拖轮性能预测

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摘要

In this paper, we outline and validate a computational fluid dynamics (CFD) method for determining the hydrodynamic forces of an escort tug in indirect towing mode. We consider a range of yaw angles from 0 degrees to 90 degrees and a travel speed of 8 knots. We discuss the effects of scaling on prediction of flow separation and hydrodynamic forces acting on the vessel by carrying out CFD studies on both model and full-scale escort tugs performing indirect escort maneuvers. As the escort performance in terms of maximum steering forces is strongly dependent on the onset of flow separation from the hull and skeg of the tug, the model-scale simulations under-predict the maximum steering force by 12% relative to the full-scale simulations. In addition, we provide a method for converting the hydrodynamic forces of the CFD escort study into towline and thrust forces.
机译:在本文中,我们概述并验证了一种用于确定间接拖曳模式下护航拖船水动力的计算流体动力学(CFD)方法。我们考虑了从0度到90度的偏航角范围和8节的行进速度。我们通过对执行间接护航演习的模型和全尺寸护航拖船进行CFD研究,讨论了结垢对流分离和作用在船舶上的水动力预测的影响。由于护航性能在最大转向力方面很大程度上取决于与拖船的船体和船separation分离的开始,因此模型规模的仿真相对于全面模型的仿真低估了最大转向力12% 。此外,我们提供了一种将CFD伴游研究的流体动力转换为拖缆力和推力的方法。

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