...
首页> 外文期刊>Ocean Engineering >Time domain simulations of piston-like resonant flow in the gap of an oscillating twin-hull using inviscid and viscous flow solvers
【24h】

Time domain simulations of piston-like resonant flow in the gap of an oscillating twin-hull using inviscid and viscous flow solvers

机译:使用粘性和粘性流量求解器振荡双壳的间隙中活塞状谐振流动的时域模拟

获取原文
获取原文并翻译 | 示例
           

摘要

A numerical study of a semi-circular twin-hull section under heave oscillation is presented. Two different time domain simulation methods were used: Firstly, a boundary element method based on potential theory which incorporates fully nonlinear free surface boundary conditions by using a mixed Eulerian Lagrangian scheme. Secondly, a finite volume method in combination with a volume of fluid scheme for capturing the free surface. In order to evaluate the effects of viscosity, simulations with the finite volume method were carried out using inviscid as well as viscous flow assumptions. Hydrodynamic mass and damping coefficients were derived from first order Fourier coefficients and validated against results from linear theory and experiments. A detailed comparison of nonlinear results from both simulation methods was carried out in vicinity of the piston-mode resonance frequency and a very good agreement was found. The phase angles corresponding to the Fourier coefficients varied strongly with frequency, which went along with a phase shift of the fluid motion in the gap. Influence of viscosity on the flow was found to be present but had relatively low impact on the hydrodynamic forces.
机译:介绍了升降振荡下半圆形双壳部分的数值研究。使用了两种不同的时域模拟方法:首先,基于潜在理论的边界元法通过使用混合欧拉拉格朗安方案结合完全非线性自由表面边界条件。其次,具有用于捕获自由表面的流体方案的有限体积法。为了评估粘度的效果,使用无粘性以及粘性流动假设进行有限体积法的模拟。流体动力质量和阻尼系数来自第一阶傅立叶系数,并验证了线性理论和实验的结果。在活塞模式共振频率附近进行了两种模拟方法的非线性结果的详细比较,并发现了非常好的协议。对应于傅立叶系数的相位角与频率强烈地变化,频率伴随着间隙中的流体运动的相移。发现粘度对流动对流动的影响存在,但对流体动力学力的影响相对较低。

著录项

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