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CFD-based predictions of hydrodynamic forces in ship-tug boat interactions

机译:基于CFD的拖轮相互作用中水动力的预测

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This paper presents numerical investigations on the ship-ship interaction between a large oil tanker and a tug boat by means of Reynolds Averaged Navier-Stokes method. Prior to the systematic simulations for predicting the hydrodynamic interactions between the ships, a grid convergence study is performed to estimate the numerical error and uncertainty in ship resistance predictions. The grid convergence results indicate that the numerical error caused by the grid discretization is small, from which an appropriate grid density is selected for the systematic investigations. In the systematic computations, the ship-tug boat interaction forces are predicted in terms of the effects from several aspects: relative positions between the two ships and drift angle of the tug boat. In comparison with previous studies on the interaction effects between two large ships with comparable sizes, the forces acting on the tug boat are more considerably influenced by the ship-tug boat interaction effects since the scale of the tug boat is much smaller than the large ship. The predicted pressure distributions further verify this phenomenon. From the systematic computations, it is suggested that in practical operations the effects on the hydrodynamic performance of the tug boat resulted from the ship-tug boat interaction should be carefully taken into account.
机译:本文利用雷诺平均Navier-Stokes方法对大型油轮与拖船之间的船舶相互作用进行了数值研究。在进行系统模拟以预测船舶之间的水动力相互作用之前,先进行网格收敛研究以评估船舶阻力预测中的数值误差和不确定性。网格收敛结果表明,由网格离散引起的数值误差很小,可以从中选择合适的网格密度进行系统研究。在系统计算中,从几个方面根据影响来预测拖船相互作用力:两船之间的相对位置和拖船的漂移角。与先前对两艘具有相当尺寸的大型船舶之间的相互作用影响的研究相比,拖轮作用的力受拖轮相互作用的影响更大,因为拖船的规模远小于大型船。 。预测的压力分布进一步验证了这种现象。从系统的计算中,建议在实际操作中应仔细考虑拖船相互作用对拖船水动力性能的影响。

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