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气压及水压对超声雾化喷雾粒径的影响研究

Influence of air pressure and water pressure on particle size of ultrasonic atomization spray
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摘要 为了研究气压和水压对超声雾化喷雾粒径参数的影响;设计了实验平台,选用了阴离子型表面活性剂快渗T配置成浓度为0.07%的溶液进行实验;分析在不同气压和水压的组合之下超声雾化喷雾粒径参数的变化情况。实验结果表明:粒径参数D10、D50、D90、VAD、SMD、NAD随着气压的增加而减小,减小幅度受到水压影响;同时,以上粒径参数也随着水压的增加而增大,增大幅度也会受到气压影响,气压对雾滴粒径变化的影响程度大于水压;当压力改变时,粒径参数D10和NAD的变化趋势呈现高度一致,D50、VAD、SMD粒径增加量呈现高度一致,总体上D90变化幅度最大,D10变化幅度最小。 In order to study the influence of air pressure and water pressure on the particle size parameters of ultrasonic atomization spray,an experimental platform was designed in this paper.Anionic surfactant rapid infiltration T was selected to configure a solution with a concentration of 0.07%for experiment.The changes of particle size parameters of ultrasonic atomization spray under different combinations of air pressure and water pressure were analyzed.The experimental results show that the particle size parameters D10,D50,D90,VAD,SMD and NAD decrease with the increase of air pressure,and the decrease is affected by water pressure.At the same time,the above particle size parameters also increase with the increase of water pressure,and the increase will also be affected by air pressure.The influence of air pressure on the change of droplet size is greater than that of water pressure.When the pressure changes,the change trend of particle size parameters D10 and NAD is highly consistent,and the increase of particle size of D50,VAD and SMD is highly consistent.
作者 张江石 任晓锋 刘建华 殷文龙 杨凌云 ZHANG Jiangshi;REN Xiaofeng;LIU Jianhua;YIN Wenlong;YANG Lingyun(School of Emergency Management and Safety Engineering,China University of Mining and Technology(Beijing),Beijing 100083,China;National Center for Occupational Safety and Health,National Health Commission of the People’s Republic of China,Beijing 102308,China;NHC Key Laboratory for Engineering Control of Dust Hazard,National Health Commission of the People’s Republic of China,Beijing 102308,China;Equipment Engineering Department,Inner Mongolia Baotou Steel Union Co.,Ltd.,Baotou 014010,China)
出处 《煤矿安全》 CAS 北大核心 2024年第5期107-113,共7页 Safety in Coal Mines
基金 国家卫生健康委粉尘危害工程防护重点实验室开放课题资助项目(KLECDH20220101)。
关键词 超声雾化喷雾 喷雾降尘 粒径参数 表面活性剂 粉尘防治 ultrasonic atomizing spray water spcoy dustfall particle size parameter surfactant dust control
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