期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于k-ω SST模型的同心筒发射装置流场数值模拟 被引量:11
1
作者 张程 夏智勋 +2 位作者 马超 金玲 张木 《航空动力学报》 EI CAS CSCD 北大核心 2019年第11期2331-2338,共8页
围绕同心筒发射装置流场数值模拟及结构优化展开研究,流场数值模拟基于轴对称Navier-Stokes(N-S)方程、k-ω shear stress transfer(SST)湍流模型,并运用域动分层动网格方法,以同心筒初始方案为参照,研究了同心筒发射过程的动态流场,在... 围绕同心筒发射装置流场数值模拟及结构优化展开研究,流场数值模拟基于轴对称Navier-Stokes(N-S)方程、k-ω shear stress transfer(SST)湍流模型,并运用域动分层动网格方法,以同心筒初始方案为参照,研究了同心筒发射过程的动态流场,在此基础上,分别对内筒收敛段的收敛角度以及筒口扩张段的扩张角度进行了优化研究,研究结果表明:内筒收敛段使得燃气排导更为通畅,筒内的热环境有所改善,并且内筒收敛段起到了一定的防喷作用,收敛角越大,筒底热环境越好;筒口扩张段对发射过程动态流场也有明显影响,收敛角为15°,扩张角为20°时,导弹从开始发射到完全出筒过程中热环境最为良好。 展开更多
关键词 同心筒发射装置 内筒收敛角 筒口扩张角 k-ωsst湍流模型 动网格方法 发射装置结构优化
原文传递
Experimental and Numerical Investigations of the Hydrodynamic Characteristics, Twine Deformation, and Flow Field Around the Netting Structure Composed of Two Types of Twine Materials for Midwater Trawls
2
作者 THIERRY Bruno Nyatchouba Nsangue TANG Hao +3 位作者 ACHILE Njomoue Pandong XU Liuxiong ZHOU Cheng HU Fuxiang 《Journal of Ocean University of China》 SCIE CAS CSCD 2021年第5期1215-1235,共21页
Nettings are complex flexible structures used in various fisheries.Understanding the hydrodynamic characteristics,de-formation,and the flow field around nettings is important to design successful fishing gear.This stu... Nettings are complex flexible structures used in various fisheries.Understanding the hydrodynamic characteristics,de-formation,and the flow field around nettings is important to design successful fishing gear.This study investigated the hydrodynamic characteristics and deformation of five nettings made of polyethylene and nylon materials in different attack angles through numeri-cal simulation and physical model experiment.The numerical model was based on the one-way coupling between computational fluid dynamics(CFD)and large deflection nonlinear structural models.Navier-Stokes equations were solved using the finite volume ap-proach,the flow was described using the k-ωshear stress turbulent model,and the large deflection structural dynamic equation was derived using a finite element approach to understand the netting deformation and nodal displacement.The porous media model was chosen to model the nettings in the CFD solver.Numerical data were compared with the experimental results of the physical model to validate the numerical models.Results showed that the numerical data were compatible with the experimental data with an average relative error of 2.34%,3.40%,6.50%,and 5.80%in the normal drag coefficients,parallel drag coefficients,inclined drag coefficients,and inclined lift coefficients,respectively.The hydrodynamic forces of the polyethylene and nylon nettings decreased by approxi-mately 52.56%and 66.66%,respectively,with decreasing net solidity.The drag and lift coefficients of the nylon netting were appro-ximately 17.15%and 6.72%lower than those of the polyethylene netting.A spatial development of turbulent flow occurred around the netting because of the netting wake.However,the flow velocity reduction downstream from the netting in the wake region in-creased with increasing attack angle and net solidity.In addition,the deformation,stress,and strain on each netting increased with in-creasing solidity ratio. 展开更多
关键词 NETTING k-ωshear stress turbulent(sst)model porous media model large deflection nonlinear structural model hydrodynamic characteristics
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部