受限水域斜拖船模型的实验与数值研究

Momchil Terziev, K. Elsherbiny, T. Tezdogan, A. Incecik
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引用次数: 0

摘要

在本研究中,通过商用Reynolds平均Navier-Stokes解算器对KCS船舶模型在10度和20度漂移角下的斜拖曳所产生的力和力矩进行了实验和数值计算。为了这项工作的目的,KCS船体以1:75的比例因子在实验和数值上建模。所采用的案例研究具有横向和纵向的限制。因此,这项工作的主题是一艘船在一个狭窄的运河的倾斜运动,深度为h/T = 2.2。通过比较几种涡粘闭合策略计算的积分量,评估了湍流模拟的相对影响。其中包括k- λ和k-ω模型的重要变体,以及广泛使用的单方程闭包。为了充分捕捉手头问题的物理特性,在每个漂移角条件下,对几个实验研究的深度弗劳德数进行了多相数值模拟。本研究旨在对所采用的湍流模型的性能进行定量评估,并为所研究问题的类别推荐最佳闭合策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental and Numerical Study of an Obliquely Towed Ship Model in Confined Waters
In this study, the forces and moments acting on the KCS ship model as a result of oblique towing at 10 and 20 degrees drift angles are evaluated experimentally and numerically via a commercial Reynolds averaged Navier-Stokes solver. For the purposes of this work, the KCS hull is modelled both experimentally and numerically at a scale factor of 1:75. The adopted case-studies feature both horizontal and vertical restrictions. Thus, the subject of this work is the oblique motion of a ship in a narrow canal with a depth of h/T = 2.2. The relative impact of turbulence modelling is assessed by comparing the computed integral quantities via several eddy-viscosity closure strategies. These include significant variants of the k-ϵ and k-ω models as well as a widely used one-equation closure. Multiphase numerical simulations are performed at several of the experimentally investigated depth Froude numbers for each drift angle condition in order to fully capture the physics of the problem at hand. The present study aims to provide a quantitative evaluation of the performance of the adopted turbulence models and recommended the best closure strategy for the class of investigated problems.
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