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飞灰颗粒与平板表面撞击过程的实验研究
引用本文:韩健,东明,李素芬,谢俊.飞灰颗粒与平板表面撞击过程的实验研究[J].化工学报,2013,64(9):3161-3167.
作者姓名:韩健  东明  李素芬  谢俊
作者单位:大连理工大学能源与动力学院, 辽宁 大连 116024
基金项目:国家自然科学基金青年科学基金项目,supported by the National Natural Science Foundation of China
摘    要:以煤粉锅炉积灰过程为研究背景,在常温常压环境下对飞灰颗粒与平板表面撞击过程进行实验研究,分析飞灰颗粒入射法向速度对颗粒法向反弹速度的影响,以及飞灰颗粒粒径对临界捕集速度的影响。实验结果表明,飞灰颗粒粒径相同时,法向恢复系数随入射法向速度的增大先增大后平缓最后减小,在增大区域具有相当陡的斜率,反映了不同形式的力在不同阶段所占的比重不同;颗粒入射法向速度相同时,法向恢复系数随着颗粒粒径的增大而增大;而临界捕集速度随颗粒粒径的增大而减小。

关 键 词:颗粒沉积  入射法向速度  法向恢复系数  临界速度  
收稿时间:2013-01-21
修稿时间:2013-04-19

Experimental research on fly ash particles impacting planar surface
HAN Jian , DONG Ming , LI Sufen , XIE Jun.Experimental research on fly ash particles impacting planar surface[J].Journal of Chemical Industry and Engineering(China),2013,64(9):3161-3167.
Authors:HAN Jian  DONG Ming  LI Sufen  XIE Jun
Affiliation:School of Energy and Power Engineering, Dalian University of Technology, Dalian 116024, Liaoning, China
Abstract:The formation of fly ash deposition on heat transfer tubes in a boiler taken as the research background,an experiment of fly ash particle impacting plate at ambient temperature and pressure was carried out to investigate the effects of initial velocity and fly ash particle diameter on normal coefficient of restitution.The experimental results show that when particle diameter remained constant,normal coefficient of restitution en first increased,then leveled,and finally decreased as normal incident velocity vi,n increased,and in the rapid increase region of en,the slope of the experimental curve(en vs vi,n)was very large.This was due to the variation of the ratios of different types of energy to the total energy in the different ranges of normal impact velocity.When normal incident velocity remained constant,normal coefficient of restitution increased as particle diameter increased.The critical capture velocity changed with microsphere diameter,the larger the size,the smaller the capture velocity.
Keywords:particle deposition  incident normal velocity  normal coefficient of restitution  critical velocity
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