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平行边壁剪切流的雷诺数与摩阻流速特性初探
引用本文:刘兆存,范玮佳,傅华,邓宇中,吕坤能.平行边壁剪切流的雷诺数与摩阻流速特性初探[J].西南农业大学学报,2011,33(7).
作者姓名:刘兆存  范玮佳  傅华  邓宇中  吕坤能
作者单位:重庆交通大学内河航运行业重点实验室与省部共建水利水运工程重点实验室;
基金项目:重庆市教委基金资助项目(KJ110415); 省部共建水利水运工程重点实验室资助项目(SLK2009A01,SLK2010B03); 重庆交通大学青年基金资助项目(XN-2009-04)
摘    要:应用涡动力学观点,分析平行边壁剪切流的流动特性和从层流到湍流转捩的特点;对雷诺数和摩阻流速的概念及他们之间的关系进行分析和评述;给出了雷诺数的不同表达形式,把它与脉动过程和失稳机制联系起来,弥补以往的动力学参数缺乏流动物理机制的不足;最后,指出摩阻流速实际上是反映流场与边壁互相作用的一个系统整体参数.

关 键 词:雷诺数  摩阻流速  涡动力学  

A Discussion of the Properties of Reynolds Number and Shear Velocity of Parallel Wall-Bounded Shear Flows
LIU Zhao-cun,FAN Wei-jia,FU Hua,DENG Yu-zhong,LV Kun-neng Key Laboratory of Inl, Waterway Regulation of Communications Industry , Key Laboratory of Waterway Engineering of Communication Ministry , Chongqing City,Chongqing Jiaotong University,Chongqing ,China.A Discussion of the Properties of Reynolds Number and Shear Velocity of Parallel Wall-Bounded Shear Flows[J].Journal of Southwest Agricultural University,2011,33(7).
Authors:LIU Zhao-cun  FAN Wei-jia  FU Hua  DENG Yu-zhong  LV Kun-neng Key Laboratory of Inl  Waterway Regulation of Communications Industry  Key Laboratory of Waterway Engineering of Communication Ministry  Chongqing City  Chongqing Jiaotong University  Chongqing  China
Institution:LIU Zhao-cun,FAN Wei-jia,FU Hua,DENG Yu-zhong,LV Kun-neng Key Laboratory of Inland Waterway Regulation of Communications Industry and Key Laboratory of Waterway Engineering of Communication Ministry and Chongqing City,Chongqing Jiaotong University,Chongqing 400074,China
Abstract:From the viewpoint of vortex dynamics,the flowing properties of parallel wall-bounded shear flows and the characters of transition from the laminar flow to the turbulent flow are analyzed,and the concepts of the Reynolds number and the shear velocity and their relations are reviewed and studied.The different forms of the Reynolds number are presented to relate it to the fluctuating and the breaking down processes to show its dynamical mechanism.The shear velocity is,in essence,a comprehensive parameter to m...
Keywords:Reynolds number  shear velocity  vortex dynamics  
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