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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Minimizing Numerical Ventilation in Computational Fluid Dynamics Simulations of High-Speed Planning Hulls
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Minimizing Numerical Ventilation in Computational Fluid Dynamics Simulations of High-Speed Planning Hulls

机译:最小化高速规划船体计算流体动力学模拟的数值通风

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摘要

Numerical ventilation (NV) is a well-known problem that occurs when the volume of fluid method is used to model vessels with a bow that creates an acute entrance angle with the free surface, as is typical for both planing hulls and yachts. Numerical ventilation may be considered one of the main sources of error in numerical simulations of planning hulls and as such warrants an in-depth analysis. This paper sets out to bring together the available work, as well as performing its own investigation into the problem to develop a better understanding of numerical ventilation and present alternate solutions. Additionally, the success and impact of different approaches are presented in an attempt to help other researchers avoid and correct for numerical ventilation. Interface smearing caused by the simulation being unable to track the free surface is identified as the main source of numerical ventilation. This originates from the interface between the volume mesh and the prism layer mesh. This study investigates this interface, presenting a novel solution to prism layer meshing that was found to minimize numerical ventilation. Through the implementation of a modified high-resolution interface capture (HRIC) scheme and the correct mesh refinements, it is possible to minimize the impact of numerical ventilation to a level that will not affect the results of a simulation and is acceptable for engineering applications.
机译:数值通风(NV)是一种众所周知的问题,当流体方法的体积用于模拟船头的船舶与自由表面产生急性入口角的船舶时,这对于刨齿和游艇的典型来说是典型的。数值通风可以被认为是规划船体的数值模拟中的主要误差源之一,因此该权证进行了深入的分析。本文阐述了将可用的工作汇集在一起​​,并对问题进行了自己的调查,以便更好地了解数字通风和目前的替代解决方案。此外,提出了不同方法的成功和影响,以帮助其他研究人员避免和纠正数字通风。由模拟引起的界面涂抹不能跟踪自由表面被识别为数值通气的主要来源。这源自卷网格和棱镜层网之间的接口。本研究调查了该界面,向发现最小化数值通气的棱镜层啮合提出了一种新的解决方案。通过实现改进的高分辨率接口捕获(HISC)方案和正确的网格改进,可以最大限度地减少数值通气对不会影响模拟结果的水平的影响,并且可以接受工程应用。

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