Wave-current impacts on surface-piercing structure based on a fully nonlinear numerical tank

Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k- E model. The mean and...

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Published inJournal of hydrodynamics. Series B Vol. 27; no. 1; pp. 131 - 140
Main Authors LI, Yong, LIN, Mian
Format Journal Article
LanguageEnglish
Published Singapore Elsevier Ltd 01.02.2015
Springer Singapore
Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China
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Online AccessGet full text
ISSN1001-6058
1878-0342
1878-0342
DOI10.1016/S1001-6058(15)60465-6

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Abstract Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k- E model. The mean and maximum wave-current impacts, including forces in two directions and rotational moment, are calculated and discussed. The effects of U/C and water depth condition on forces and moment have been investigated and the results for combined irregular waves and waves and currents. currents are compared with those induced by combined regular
AbstractList Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k- E model. The mean and maximum wave-current impacts, including forces in two directions and rotational moment, are calculated and discussed. The effects of U/C and water depth condition on forces and moment have been investigated and the results for combined irregular waves and waves and currents. currents are compared with those induced by combined regular
Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k – ɛ model. The mean and maximum wave-current impacts, including forces in two directions and rotational moment, are calculated and discussed. The effects of U/C and water depth condition on forces and moment have been investigated and the results for combined irregular waves and currents are compared with those induced by combined regular waves and currents.
Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k - ε model. The mean and maximum wave-current impacts, including forces in two directions and rotational moment, are calculated and discussed. The effects of U/C and water depth condition on forces and moment have been investigated and the results for combined irregular waves and currents are compared with those induced by combined regular waves and currents.
Author LI Yong LIN Mian
AuthorAffiliation Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China
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Issue 1
Keywords wave-current impacts
numerical wave-current tank
wave spectrum
irregular wave
surface-piercing structure
Language English
License cc-by-nc-sa
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Notes 31-1563/T
Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D numerical tank. The model is based on Reynolds averaged Navier-Stokes (RANS) equations and renormalization group (RNG) k- E model. The mean and maximum wave-current impacts, including forces in two directions and rotational moment, are calculated and discussed. The effects of U/C and water depth condition on forces and moment have been investigated and the results for combined irregular waves and waves and currents. currents are compared with those induced by combined regular
numerical wave-current tank, wave-current impacts, surface-piercing structure, irregular wave, wave spectrum
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Snippet Fully nonlinear wave-body interactions for a surface-piercing structure with combined wave-current flow in different water depths are studied by using a 2-D...
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StartPage 131
SubjectTerms Engineering
Engineering Fluid Dynamics
Hydrology/Water Resources
irregular wave
Numerical and Computational Physics
numerical wave-current tank
Simulation
surface-piercing structure
wave spectrum
wave-current impacts
刺穿
完全非线性波
旋转力矩
波流
相互作用
表面结构
重整化群
非线性数值
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Title Wave-current impacts on surface-piercing structure based on a fully nonlinear numerical tank
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