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Improving longitudinal motion prediction of hybrid monohulls with the viscous effect
作者姓名:ZHANG  Heng  LI  Ji-de
作者单位:ZHANG Heng and LI Ji-de College of Shipbuilding Engineering,Harbin Engineering University,Harbin 150001,China
摘    要:A new method improves prediction of the motion of a hybrid monohull in regular waves. Stem section hydrodynamic coefficients of a hybrid monohull with harmonic oscillation were computed using the Reynolds Averaged Navier-Stokes Equations (RANSE). The governing equations were solved using the finite volume method. The VOF method was used for free surface treatment, and RNGК-ε turbulence model was employed in viscous flow calculation. The whole computational domain was divided into many blocks each with structured grids, and the dynamic process was treated with moving grids. Using a 2-D strip method and 2.5D theory with the correction hydrodynamic coefficients allows consideration of the viscous effect when predicting longitudinal motion of a hybrid monohull in regular waves. The method is effective at predicting motion of a hybrid monohull, showing that the viscous effect on a semi-submerged body cannot be ignored.

关 键 词:船舶  设计方案  适航性  模拟技术
文章编号:1671-9433(2007)03-0039-07
修稿时间:2007-04-02

Improving longitudinal motion prediction of hybrid monohulls with the viscous effect
ZHANG Heng LI Ji-de.Improving longitudinal motion prediction of hybrid monohulls with the viscous effect[J].Journal of Marine Science and Application,2007,6(3):39-45.
Authors:Heng Zhang  Ji-de Li
Institution:(1) College of Shipbuilding Engineering, Harbin Engineering University, Harbin, 150001, China
Abstract:A new method improves prediction of the motion of a hybrid monohull in regular waves. Stem section hydrodynamic coefficients of a hybrid monohull with harmonic oscillation were computed using the Reynolds Averaged Navier-Stokes Equations (RANSE). The governing equations were solved using the finite volume method. The VOF method was used for free surface treatment, and RNGK-ε turbulence model was employed in viscous flow calculation. The whole computational domain was divided into many blocks each with structured grids, and the dynamic process was treated with moving grids. Using a 2-D strip method and 2.5D theory with the correction hydrodynamic coefficients allows consideration of the viscous effect when predicting longitudinal motion of a hybrid monohull in regular waves. The method is effective at predicting motion of a hybrid monohull, showing that the viscous effect on a semi-submerged body cannot be ignored.
Keywords:hybrid mono-hull  motion prediction  hydrodynamic coefficient  simulation of viscous flow
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