Investigating the influence of sheared currents on ship hydrodynamics in confined water using Computational Fluid Dynamics

Momchil Terziev, T. Tezdogan, A. Incecik, C. De Marco Muscat-Fenech
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Abstract

The field of ship hydrodynamics in confined water has received increased attention by the academic community in recent years. Nevertheless, a number of phenomena occurring in confined waters are yet to be examined using high fidelity Computational Fluid Dynamics (CFD) or experimentally. One particular case is the presence of sheared currents and their impact on the performance of a ship. Such currents can be generated in confined waters as a result of the natural flow of water in rivers or due to the action of tidal influences in long canals. Alternatively, due to the short fetch of many inland waterways, the action of wind may result in the production of a sheared current. This work aims to investigate these effects by making use of a commercially available Reynolds Averaged Navier-Stokes (RANS) solver. A number of current profiles are numerically modelled to determine their influence on ship performance and the manner in which ship waves interact with the background current. The present study will contribute to the understanding of restricted water effects by revealing the impact of shear currents on ship performance
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用计算流体力学方法研究剪切流对密闭水中船舶水动力的影响
近年来,船舶在密闭水域的水动力学研究日益受到学术界的关注。然而,在封闭水域中发生的许多现象尚未使用高保真计算流体动力学(CFD)或实验进行检验。一个特殊的例子是剪切流的存在及其对船舶性能的影响。这种水流可以在封闭的水域中产生,这是由于河流中水的自然流动或由于长运河中潮汐影响的作用。另外,由于许多内陆水道的航程较短,风的作用可能导致产生剪切流。这项工作的目的是通过使用市售的雷诺兹平均纳维-斯托克斯(RANS)求解器来研究这些影响。对许多水流剖面进行了数值模拟,以确定它们对船舶性能的影响以及船舶波浪与背景水流相互作用的方式。通过揭示剪切流对船舶性能的影响,本研究将有助于理解限制水效应
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