Experimental study of the factors influencing the uniformity of an air curtain and numerical simulation of the factors influencing its dust barrier effect.

Pei Wang, Zhongan Jiang, Hui Wang
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引用次数: 0

Abstract

This study analyzes the influence of air curtain diameter and internal duct structure on the uniformity of an air curtain using Fluent numerical simulation combined with an experimental method after actual measurement of relevant parameters at the construction site, and simulates the best dust insulation parameters of a uniform air curtain. As the diameter of the air curtain supply duct increases and the internal air duct structure is reasonably designed, the axial static pressure of the air curtain generator and the air velocity at the curtain outlet are more uniform, which forms a higher strength of the air curtain. The best dust separation parameter of the uniform air curtain is the vertical downward generated air curtain with an outlet air velocity of 12 m/s and an outlet strip slit width of 80 mm, in which the dust separation efficiency could reach about 79.5%.

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对影响气幕均匀性的因素进行实验研究,并对影响气幕阻尘效果的因素进行数值模拟。
本研究在施工现场实际测量相关参数后,采用Fluent数值模拟结合实验的方法,分析了风幕直径和内部风道结构对风幕均匀性的影响,模拟出了均匀风幕的最佳隔尘参数。随着风幕送风管道直径的增大和内部风道结构的合理设计,风幕发生器的轴向静压和风幕出口处的风速更加均匀,形成的风幕强度更高。均匀风幕的最佳粉尘分离参数为垂直向下产生的风幕,出口风速为 12 m/s,出口条缝宽度为 80 mm,粉尘分离效率可达 79.5%左右。
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来源期刊
CiteScore
4.80
自引率
8.30%
发文量
152
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