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CFD simulation of the passing vessel effects on moored vessel

机译:渡船对系泊船影响的CFD模拟

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In recent years, there has been an increased use of large displacement vessels for cargo transport around the world. Due to space constraints in the matured ports, the clearance available between the approach channels and berths could not be increased or modified. Hence, the vessels passing in close vicinity to the berthed vessels has become a routine. It is essential to study the passing vessel and berthed vessel interaction for ensuring safety so that the mooring systems could be designed for the increased forces. In this paper, a study envisaging such interaction using Computational Fluid Dynamics (CFD) simulations has been attempted to determine the passing vessel effect on a moored tanker. The CFD solution used is based on a three-dimensional, unsteady, inviscid flow. Initially, the CFD simulation has been carried out for existing experimental data from published paper for validation and has been extended to a range of parameters such as passing vessel displacement, velocity, separation distance and water depth. The effect of each parameter on passing vessel forces is explained in detail. It is observed from the results that the longitudinal and transverse forces on the moored vessel become negligible for separation distance more than three times the width of the vessel. Also, the study provides a proper insight into the effect of full hull forms of various displacements on the passing vessel forces.
机译:近年来,在世界范围内越来越多地使用大型排水船进行货物运输。由于成熟港口的空间限制,无法增加或修改进近通道和泊位之间的净空。因此,在靠泊的船只附近通过的船只已成为惯例。为了确保安全性,必须研究过往船只与停泊船只的相互作用,以便可以为增加的力量设计系泊系统。在本文中,已尝试使用计算流体动力学(CFD)模拟进行这种相互作用的研究,以确定过往船只对系泊油轮的影响。所使用的CFD解决方案基于三维非定常无粘性流。最初,已经对已发表论文中的现有实验数据进行了CFD仿真以进行验证,并已扩展到一系列参数,例如通过容器的位移,速度,分离距离和水深。详细说明了每个参数对通过船只力的影响。从结果可以看出,停泊在船只上的纵向力和横向力对于间隔距离可以忽略不计,是船只宽度的三倍。此外,该研究还对各种位移的完整船体形式对通过的船只力的影响提供了适当的了解。

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