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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >The sensitivity of ship resistance to wall-adjacent grids and near-wall treatments
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The sensitivity of ship resistance to wall-adjacent grids and near-wall treatments

机译:船舶对临近墙的格栅和近墙处理的敏感性

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Numerical simulations of turbulent flows around KCS have been performed to study the sensitivity of ship resistance to wall-adjacent grids and disclose the influence of near-wall treatment on the sensitivity of ship resistance. The resistance coefficients of viscous and pressure forces were compared when using realizablek-εand SSTk-ωturbulence models in structured and unstructured grids, respectively. The calculation of friction velocity was found to be mainly responsible for the reduction of viscous and total resistances when the height of wall-adjacent cells increased. Since the assumption of equilibrium state between turbulent production and dissipation was not met in a bulbous bow, it was more reasonable to iteratively calculate the friction velocity from empirical laws of the wall for near-wall treatment rather than explicitly estimate it from the turbulent kinetic energy.
机译:已经进行了围绕KCS的湍流的数值模拟,以研究船舶阻力对临近壁栅的敏感性,并揭示了近壁处理对船舶阻力敏感性的影响。在结构化和非结构化网格中分别使用可实现的k-ε和SSTk-ω湍流模型时,比较了粘性阻力和压力阻力系数。人们发现,当壁相邻单元格的高度增加时,摩擦速度的计算主要是降低了粘性和总阻力。由于在球形弓中没有满足湍流产生和耗散之间的平衡状态的假设,因此从壁的经验定律迭代计算近壁处理的摩擦速度,而不是从湍动能中明确估计,这是更合理的。

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