Hydrodynamic Analysis of a Suspended Cylinder Under Regular Wave Loading Based on Computational Fluid Dynamics

P. Mucha, A. Robertson, J. Jonkman, F. Wendt
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引用次数: 2

Abstract

An investigation into the computation of hydrodynamic loads on a suspended cylinder in regular waves is presented. The primary goal was to perform a three-way validation of the loads between experimental measurements and simulations from two computational methods. Experimental measurements of the longitudinal in-line force on a cylinder suspended at a fixed position were available from the Offshore Code Comparison Collaboration, Continued, with Correlation (OC5) project, Phase Ia. These measurements were compared to computational fluid dynamics (CFD) simulations based on the solution of Reynolds-averaged Navier-Stokes (RANS) equations, as implemented in STAR-CCM+. The study encompassed a sensitivity analysis of the loads computed in STAR-CCM+ based on wave modeling, boundary conditions, turbulence modeling, and spatial and temporal discretization. The analysis was supplemented by results generated with the offshore wind turbine engineering software OpenFAST, based on a hybrid combination of second-order potential flow and viscous drag from Morison’s equation. The focus of the investigation was on the assessment of the accuracy of the computation of first- and higher-order hydrodynamic loads. Substantial differences were observed in the numerical prediction of the second and third harmonic force contribution. Local flow field analysis with CFD was applied to study the physics of wave run-up and diffraction dynamics to identify the causes.
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基于计算流体力学的规则波浪载荷下悬架圆柱的水动力分析
研究了规则波浪作用下悬挂圆柱的水动力载荷计算问题。主要目标是在实验测量和两种计算方法的模拟之间进行载荷的三向验证。悬浮在固定位置的圆柱体上的纵向直线力的实验测量可从海上代码比较协作,继续,与相关(OC5)项目,阶段i中获得。这些测量结果与STAR-CCM+中基于reynolds -average Navier-Stokes (RANS)方程求解的计算流体动力学(CFD)模拟结果进行了比较。该研究包括基于波浪模型、边界条件、湍流模型和时空离散化对STAR-CCM+计算的载荷进行敏感性分析。基于Morison方程的二阶势流和粘性阻力的混合组合,海上风力涡轮机工程软件OpenFAST对分析结果进行了补充。研究的重点是评估一阶和高阶水动力载荷计算的准确性。在二次和三次谐波力贡献的数值预测中观察到实质性的差异。采用CFD局部流场分析方法对波浪上升的物理特性和衍射动力学进行了研究,找出了产生原因。
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