期刊文献+

自由分子区布朗凝并作用下的颗粒尺寸分布变化 被引量:1

THE CHANGE OF PARTICLE SIZE DISTRIBUTION OF THE FREE-MOLECULE REGIME
下载PDF
导出
摘要 对于燃烧过程中生成的亚微米颗粒,其一次颗粒的长大过程主要是通过碰撞凝并实现的。本文通过对颗粒的初始分布作出一个合理的正态对数分布的假设,运用矩方法(Moment Method)研究了自由分子区的颗粒在布朗碰撞作用下的颗粒尺寸分布的变化情况。所得到的长时间碰撞凝并结果符合布朗碰撞凝并过程的自保持特性。数值结果还表明,颗粒初始的宽粒径分布会显著提高粒子云的在凝并初期的凝并速率和生成粒子的平均直径,且最终生成的粒子尺寸都是宽分布的。这说明在预报微细颗粒的迁移和长大过程中有必要考虑粒子的宽分布特性。 For the sub-micro particles generate in the combustion process, Browian coagulation is the main reason that causes the growth of the primary particles. In this article, we first give particles a reasonable log-normal size distribution, using moment method, and predict the change of particle ize distribution in the Brownian coagulation process. The results we got accord to the self-preserved.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2005年第z1期109-112,共4页 Journal of Engineering Thermophysics
基金 国家重大基础研究项目资助(No.2002CB211601)
关键词 自由分子区 布朗碰撞凝并 距方法 free-molecule regime Brownian coagulation moment method
  • 相关文献

参考文献5

  • 1[1]Smoluchowski M, Von Z. Phys. Chem., 1918, (92): 129
  • 2[2]Miiller H. Kolloidbeihefte, 1928, (27): 223
  • 3[3]Lai F S, Friedlander S K, Pich J, et al. J. Colloid Interface Sci., 1972, (39): 395
  • 4[4]Kari E J Lehtinen1, Michael R Zachariah. J. Colloid Interface Sci., 2001, (242): 314-318
  • 5[5]S H Park, K W Lee. J. Colloid Interface Sci., 2002, 246:85-91

同被引文献31

  • 1Eddings E G, Sarofim A F, Lee C M, et al. Trends in predicting and controlling ash vaporization in coal -fired utility boiler[J]. Fuel Processing Technology, 2001, 71:39-51.
  • 2Senior C L, Flagan R C. Ash vaporization and condensation during combustion of a suspended coal particle [ J ]. Aerosol Science and Technology, 1982, 1:371-383.
  • 3Quann R J, Sarofim A F. Vaporization and refractory oxides during pulverized coal combustion [ C ]// Nineteenth Symposium (International) on Combustion. 1982: 1429-1440.
  • 4Seames W S. An initial study of the fine fragmentation fly ash particle mode generated during pulverized coal combustion[ J]. Fuel Processing Technology, 2003, 81 : 109-125.
  • 5Schmidt E W, Gieseke J A, Allen J M. Size distribution of fine particulate emission from a coal-fired power plant [ J ].Atmospheric Environment, 1976, 10 : 1065-1069.
  • 6McElroy M W, Carr R C, Ensor D S, et al. Size distribution of fine particles from coal combustion [ J ]. Science,1982, 215:13-19.
  • 7Quann R J. Ash Vaporization Under Simulated Pulverized Coal Combustion Conditions [ D]. Massachusetts Institute of Technology, 1982.
  • 8Helble J J. Mechanisms of Ash Particle Formation and Growth During Pulverized Coal Combustion [ D ]. Massachusetts Institute of Technology, 1987.
  • 9Helble J J, Neville M, Sarofim A F. Aggregation formation from vaporized ash during pulverized coal combustion [ C ]//Twenty-first Symposium ( International ) on Combustion.1986: 411-417.
  • 10Jokiniemi J K, Lazaridis M, Lentinen K E J, et al. Numerical simulation of vapor-aerosol dynamics in coal combustion process [ J ]. Journal of Aerosol Science, 1994, 25 ( 3 ) :429-446.

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部