首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >CFD CALCULATIONS FOR FREE-SURFACE-PIERCING LOW ASPECT RATIO CIRCULAR CYLINDER WITH SOLUTION VERIFICATION AND COMPARISON WITH EXPERIMENTS
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CFD CALCULATIONS FOR FREE-SURFACE-PIERCING LOW ASPECT RATIO CIRCULAR CYLINDER WITH SOLUTION VERIFICATION AND COMPARISON WITH EXPERIMENTS

机译:CFD计算的低纵横比圆柱体具有解决方案验证和实验的比较

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The flow around free-surface piercing, low aspect-ratio circular cylinder is investigated by means of unsteady Reynolds averaged Navier-Stokes (URANS) calculations together with verification procedures and comparison with small-scale experimental and Particle Image Velocimetry results. A two-phase interface capturing model is used to handle the free-surface flow, together with k-ω SST turbulence model. We investigate physical and modeling aspects of this problem in order to gain more knowledge about the interaction of free-surface and free-end effects so that this mechanism is better understood and taken into account when modeling the problem in engineering-applied situations, such as the vortex induced motion of spars, tension-leg platforms and semi-submersibles. The case herein presented is a captive, low aspect-ratio cylinder (L/D = 2.0) with flow velocity corresponding to Reynolds and Froude numbers (both based on diameter) of Re = 4.3 × 10~4 and Fn_D = 0.31, respectively. We will show that appreciable free-surface effects are perceived on the flow, but with dominance of free-end effects, at least in terms of forces. Furthermore, we investigate different boundary conditions that would represent this free-surface problem to show that the separation of viscous and free-surface effects is not valid in this instance. Therefore, the interaction between viscous and free-surface effects is also tangentially investigated. In order to support our conclusions, we will show forces with uncertainty estimation and field variables obtained with different modeling strategies, unveiling physical and numerical aspects of this problem.
机译:周围自由表面穿刺的流动,低纵横比的圆筒是由不稳定的雷诺兹方法研究与验证程序,并用小规模的实验和粒子图像测速结果的比较平均纳维 - 斯托克斯(URANS)计算在一起。的两相界面捕获模型被用于具有k-ωSST湍流模型来处理自由表面流,在一起。我们调查的物理和,以获得有关的自由表面和自由端效应的相互作用更多的知识,使这一机制更好地理解和在工程,应用情况建模问题时予以考虑,如建模这个问题的方面翼梁,张力腿平台,半潜式的涡流引起的运动。本文中所呈现的情况下是分别对应于雷诺数和Re中的弗劳德数(都基于直径)= 4.3×10 -4和Fn_D = 0.31,圈养,低纵横比的气缸(L / d = 2.0)与流速。我们将证明,明显的自由表面效应被认为在流动,但与自由端部效应的优势,至少在力量方面。此外,我们研究不同的边界条件,将代表该自由表面问题表明的粘性和自由表面效应的分离是不是在这种情况下有效。因此,粘性的和自由表面作用之间的相互作用也相切调查。为了支持我们的结论,我们将展示与不同的建模策略,揭幕物理和这个问题的数值方面获得不确定性估计和字段变量力量。

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