首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Numerical analysis of two and three dimensional buoyancy driven water-exit of a circular cylinder
【24h】

Numerical analysis of two and three dimensional buoyancy driven water-exit of a circular cylinder

机译:圆柱二维和三维浮力驱动出水的数值分析

获取原文

摘要

ABSTRACT With the development of the technology of underwater moving bodies, the need for developing the knowledge of surface effect interaction of free surface and underwater moving bodies is increased. Hence, the two-phase flow is a subject which is interesting for many researchers all around the world. In this paper, the non-linear free surface deformations which occur during the water-exit of a circular cylinder due to its buoyancy are solved using finite volume discretization based code, and using Volume of Fluid (VOF) scheme for solving two phase flow. Dynamic mesh model is used to simulate dynamic motion of the cylinder. In addition, the effect of cylinder mass in presence of an external force is studied. Moreover, the oblique exit and entry of a circular cylinder with two exit angles is simulated. At last, water-exit of a circular cylinder in six degrees of freedom is simulated in 3D using parallel processing. The simulation errors of present work (using VOF method) for maximum velocity and height of a circular cylinder are less than the corresponding errors of level set method reported by previous researchers. Oblique exit shows interesting results; formation of waves caused by exit of the cylinder, wave motion in horizontal direction and the air trapped between the waves are observable. In 3D simulation the visualization of water motion on the top surface of the cylinder and the free surface breaking on the front and back faces of the 3D cylinder at the exit phase are observed which cannot be seen in 2D simulation. Comparing the results, 3D simulation shows better agreement with experimental data, specially in the maximum height position of the cylinder.
机译:摘要随着水下运动物体技术的发展,对自由表面与水下运动物体的表面效应相互作用的认识的需求增加。因此,两相流是世界上许多研究人员感兴趣的一个主题。在本文中,使用基于有限体积离散化的代码,并使用流体体积(VOF)方案解决了两相流,解决了由于圆柱体的浮力而在圆筒出水期间发生的非线性自由表面变形。动态网格模型用于模拟圆柱体的动态运动。另外,研究了在有外力的情况下气缸质量的影响。此外,还模拟了具有两个出口角的圆柱体的倾斜出口和入口。最后,使用并行处理在3D中模拟了六个自由度的圆柱体的出水情况。当前工作(使用VOF方法)对圆柱最大速度和最大高度的模拟误差小于以前研究人员报道的水平设定方法的相应误差。倾斜出口显示出有趣的结果;可以观察到由气缸出口引起的波浪形成,水平方向的波浪运动以及波浪之间的空气滞留。在3D模拟中,观察了圆柱体顶面上水运动的可视化以及在出口阶段3D圆柱体的正面和背面的自由表面破裂,这在2D模拟中是看不到的。比较结果,3D仿真显示出与实验数据更好的一致性,特别是在圆柱体的最大高度位置。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号