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Experimental and Computational Studies on Coanda Nozzle Flow for the Air Knife Application
作者姓名:Soon-Bum KWON  Dong-Won LEE  Young-Doo KWON
作者单位:School of Mechanical Engineering Kyungpook National University,1370,Sankyuk-dong,Daegu 702-701,Korea,School of Mechanical Engineering,Kyungpook National University,1370,Sankyuk-dong,Daegu 702-701,Korea,School of Mechanical Engineering,Kyungpook National University,1370,Sankyuk-dong,Daegu 702-701,Korea
摘    要:To control the film thickness of zinc in the process of continuous hot-dip galvanizing,it is known from the earlydays that the gas wiping through an air knife is the most effective one.The gas wiping using in galvanizing proc-ess brings about a problem of splashing from the strip edge for a certain high speed of coating.So,in the presentstudy,the effects of the deflection angle of Coanda nozzle on jet structure and the distribution of impinging pres-sure at the plate surface are investigated numerically and experimentally.In numerical analysis,the governingequations consisted of three-dimensional time dependent full Navier-Stokes equations,standard k-ε turbulencemodel to solve turbulent stress and so on are employed.In experiment,16 channel pressure scanning valve and3-axis auto traversing unit are used to measure the impinging pressure at the strip surface.As a result,it is foundthat the smaller the deflection angle for the same nozzle slit of air knife is,the larger the impinging pressure is.Toreduce the size of separation bubble and to enhance the cutting ability,it is recommendable to use an air knifewith the Coanda nozzle.

关 键 词:附壁效应  喷嘴  流动  气刀  应用
收稿时间:15 June 2006

Experimental and computational studies on Coanda nozzle flow for the air knife application
Soon-Bum KWON,Dong-Won LEE,Young-Doo KWON.Experimental and Computational Studies on Coanda Nozzle Flow for the Air Knife Application[J].Journal of Thermal Science,2007,16(2):164-169.
Authors:Soon-Bum Kwon  Dong-Won Lee  Young-Doo Kwon
Affiliation:(1) School of Mechanical Engineering, Kyungpook National University, 1370, Sankyuk-dong, Daegu, 702-701, Korea
Abstract:To control the film thickness of zinc in the process of continuous hot-dip galvanizing, it is known from the early days that the gas wiping through an air knife is the most effective one. The gas wiping using in galvanizing process brings about a problem of splashing from the strip edge for a certain high speed of coating. So, in the present study, the effects of the deflection angle of Coanda nozzle on jet structure and the distribution of impinging pressure at the plate surface are investigated numerically and experimentally. In numerical analysis, the governing equations consisted of three-dimensional time dependent full Navier-Stokes equations, standard k-ɛ turbulence model to solve turbulent stress and so on are employed. In experiment, 16 channel pressure scanning valve and 3-axis auto traversing unit are used to measure the impinging pressure at the strip surface. As a result, it is found that the smaller the deflection angle for the same nozzle slit of air knife is, the larger the impinging pressure is. To reduce the size of separation bubble and to enhance the cutting ability, it is recommendable to use an air knife with the Coanda nozzle.
Keywords:Air knife  Coanda effect  edge splashing  gas wiping  hot-dip galvanizing  impinging jet
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