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首页> 外文期刊>International Journal of Offshore and Polar Engineering >Numerical Investigation of Water-Entry Problems Using IBM Method
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Numerical Investigation of Water-Entry Problems Using IBM Method

机译:使用IBM方法的水进入问题的数值研究

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This paper presents a systematic numerical investigation of the water-entry problems associated with dropping triangular wedges or ship sections that uses an incompressible Immersed Boundary Method (IBM). In the IBM, the solid bodies are treated as an additional phase, and their motions are solved by a unified equation similar to those governing the air and water flows; a level-set technique is used to identify the air-water interface, and a projected Heaviside function is developed to identify the fluid-solid interface. For the purpose of comparison, a corresponding numerical simulation with or without consideration of the compressibility of the fluids is also carried out by using OpenFOAM. All results are compared with the experimental data provided by the comparative study of ISOPE 2016. The results suggest that the unified equation in the IBM can well predict the motion of the dropping bodies; the IBM can capture the entrapped air and produce an impact pressure and local and global forces that agree fairly well with the experimental data.
机译:本文介绍了使用不可压缩的浸入边界法(IBM)进行的与掉落三角形楔形物或船舶截面相关的水进入问题的系统数值研究。在IBM中,将固体视为附加阶段,并通过类似于控制空气和水流的统一方程来解决其运动。使用水平集技术来识别空气-水界面,并开发投影的Heaviside函数来识别流固界面。为了进行比较,还可以通过使用OpenFOAM在不考虑流体可压缩性的情况下进行相应的数值模拟。将所有结果与ISOPE 2016对比研究提供的实验数据进行了比较。结果表明,IBM中的统一方程式可以很好地预测下落物体的运动; IBM可以捕获截留的空气并产生冲击压力,以及与实验数据相当吻合的局部和全局力。

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