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Chemcial Industry and Engineering 2013, Vol. 30 Issue (3) :60-65    DOI:
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Experimental Investigation on Particle Atomization Performance of Air Atomizing Nozzle
 LIU  Li-Yan1, YANG  Jing1, KONG  Qing-Sen1, WANG  Chu-Chen2, TAN  Wei1
1.School of Chemical Engineering and Technology, Tianjin University;2.Hangzhou Communications Investment Group Co., Ltd.

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Abstract The particle size distribution of a common air atomizing nozzle with small flow was measured by LSA-Ⅲ laser particle sizer. The experiment was mainly focused on particle size distribution along the different axial position in the condition of different gas-liquid ratio, gas pressure and liquid pressure. The experimental results show that both gasliquid ratio and gas pressure have influence on particle size, the effect of gas pressure is the biggest, then is the gas-liquid ratio and liquid pressure is smallest. According to this experimental condition, the surface area average diameter and volume average diameter of droplet changing at the axial distance of 100 mm, 200 mm, 300 mm, 400 mm and 500 mm are undulatory. By data analysis of the experimental results of droplet size distribution, the characteristic parameters of and n in RosinRammler distribution function could be obtained, and the theory foundation of quantitative calculation for droplet size was provided.
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Articles by authors
LIU Li-Yan
YANG Jing
KONG Qing-Sen
WANG Chu-Chen
TAN Wei
Keywordsair atomizing nozzle   LSA-Ⅲ laser particle sizer   particle size distribution   Rosin-Rammler distribution function     
Received 2012-05-17;
Fund:

长江学者和创新团队发展计划(IRT0936)。

Corresponding Authors: 谭蔚,电话:(022)27408728,E-mail: wtan@tju.edu.cn。     Email: wtan@tju.edu.cn
About author: 刘丽艳(1977-),女,博士,副教授。
Cite this article:   
LIU Li-Yan, YANG Jing, KONG Qing-Sen, WANG Chu-Chen, TAN Wei.Experimental Investigation on Particle Atomization Performance of Air Atomizing Nozzle[J]  Chemcial Industry and Engineering, 2013,V30(3): 60-65
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