摘要
针对水下回转体近壁面流动和脉动压力开展研究。首先综述了水下回转体近壁面数值模拟方法的研究现状,然后采用壁面模化大涡模拟方法模拟不同来流速度下水下回转体近壁面的湍流特性和壁面脉动压力,对涡结构、轴向速度和脉动压力等进行分析比较,并研究回转体首部湍流特性,最后探究不同入流条件对首部边界层内流动影响的机理。
This study explores research methods for near-wall flow and pulsating pressure of underwater rotating bodies.First,the current state of research on numerical simulation methods for the near-wall flow of underwater rotating bodies is reviewed.Then,the wall-modeled large eddy simulation(WMLES)method is employed to simulate the near-wall turbulent characteristics and wall pressure fluctuations of underwater rotating bodies under different inflow velocities and inflow turbulence intensities.Turbulent kinetic energy,forces,axial velocity,and pulsating pressure are analyzed,along with the investigation of fluctuations in the turbulent flow at the bow of the rotating body.Finally,the mechanism of the influence of the inflow condition on the flow within the bow boundary layer is explored.
作者
孟欣欣
周福昌
曹留帅
万德成
MENG Xinxin;ZHOU Fuchang;CAO Liushuai;WAN Decheng(Computational Marine Hydrodynamic Lab(CMHL),School of Naval Architecture,Ocean and Civil Engineering,Shanghai Jiao Tong University,Shanghai 200240,China;Wuhan Second Ship Design and Research Institute,Wuhan 430205,China)
出处
《中国造船》
EI
CSCD
北大核心
2024年第2期205-215,共11页
Shipbuilding of China
基金
国家自然科学基金资助项目(52131102)。
关键词
水下回转体
壁面模化大涡模拟
湍流动能
壁面脉动压力
underwater rotating body
wall-model large eddy simulation
turbulent kinetic energy
wall pressure fluctuations