黏性液体三次雾化的试验研究  

Experimental Research on Tertiary Atomization of Viscous Liquid

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作  者:杨伟红[1,2] 宋锦春[1] 陈建文[1] 佟琨[1] 

机构地区:[1]东北大学,沈阳110004 [2]辽宁工程技术大学,阜新123000

出  处:《中国机械工程》2011年第20期2481-2485,共5页China Mechanical Engineering

基  金:国家自然科学基金资助项目(50875040)

摘  要:对黏性液体进行了超音速二次雾化和基于撞击流技术的三次雾化试验,并对三次雾化的影响因素进行了分析。分析结果表明:随着进气压力和压缩空气流量增大,油雾颗粒粒径变小;随着进气压力增大,油雾浓度逐渐变小;随着韦伯数增大,粒径变化率变小。当韦伯数小于5.376时,粒径变化率大于零;当韦伯数大于5.376时,粒径变化率小于零;当韦伯数为22.81时,油雾颗粒粒径变化率绝对值最大,且喷嘴喉口直径为影响粒径变化率大小的主要因素。Experimental research on supersonic secondary atomization of viscous liquid and tertiary atomization of viscous liquid were carried out based on impinging-stream technology. Influence factors of tertiary atomization were analyzed. The results show that oil mist particle diameter decreases with the increase of intake pressure and compressed air flow; oil mist concentration decreases gradual- ly with the increase of intake pressure; change rate of particle diameter decreases with the increase of Weber number. When Weber number is less than 5. 376 ,change rate of particle diameter is larger than zero;when Weber number is more than 5. 376, change rate of particle diameter is less than zero; when Weber number is at 22.81, maximum absolute value of change rate of particle diameter occurs and throat diameter of nozzle is the main influence factor of change rate value of particle diameter.

关 键 词:黏性液体 超音速雾化 撞击流 正交试验 粒径 

分 类 号:TH117.2[机械工程—机械设计及理论]

 

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