Added Resistance CFD Analysis of the KVLCC2 With the Naval Hydro Pack

V. Vukcevic, I. Gatin, Ghuiyeon Kim, H. Jasak
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引用次数: 0

Abstract

A CFD analysis of added resistance of a KVLCC2 ship model is presented in this paper. The Naval Hydro Pack, an open source software library for computational naval hydrodynamics based on OpenFOAM is used to perform the simulations. Ten head wave cases are considered in this study ranging from short waves to long waves (wave length to length between perpendiculars ranging from 0.3 to 2). During the initial stages of our research, we had noticed significant over-prediction of added resistance compared to experimental results. After thorough analysis, the issue was found to be related to inadequate turbulence modeling using the standard k-ω SST model. Using the free surface sensitised model, the prediction of the added resistance improves significantly Compared to the experimental results, majority of the cases with different wave lengths have errors smaller than several percent. In addition to added resistance, heave and pitch motion amplitudes are compared to recent experimental results by Park et al. [1], showing good agreement. CPU time required to perform the computations is also discussed.
KVLCC2与海军Hydro Pack的附加阻力CFD分析
本文对一艘KVLCC2型船舶模型的附加阻力进行了CFD分析。利用基于OpenFOAM的开放源码海军流体动力学计算软件库Naval Hydro Pack进行仿真。本研究考虑了从短波到长波的十种头波情况(垂直线之间的波长与长度范围为0.3至2)。在研究的初始阶段,我们注意到与实验结果相比,附加阻力的过度预测明显。经过深入分析,发现问题与使用标准k-ω海表温度模型的湍流模拟不充分有关。使用自由表面敏化模型,对附加电阻的预测有了明显的提高。与实验结果相比,不同波长的情况下,大多数误差都在几个百分点以内。除了增加的阻力外,还将升沉和俯仰运动幅度与Park等人最近的实验结果进行了比较,结果一致。还讨论了执行计算所需的CPU时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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