Aerosol particle deposition in the obstructed duct flow subjected to an electric field장애물이 설치된 덕트내 정전유동장에서의 에어로졸 입자 부착현상

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Particle transport phenomena have become significant in numerous industrial processes. Recently, the research on the particle transport in a complex geometry with an electric field has been carried out in the fields of electronic packages in computers, electrostatic precipitators (ESPs) and electrostatic sprays. It is of interest how inertial particles interact with the electric field in a complex geometry. In the present work, the effect of electrostatic and inertial forces on the particle deposition was studied by introducing the wall-mounted blocks with various heights subjected to an electric field. The electric field was obtained by solving the Laplace equation and the turbulent gas velocity profile was given from the standard and nonlinear k-ε turbulence model. The trajectory model was adopted to obtain the information on the particle phase trajectories and number concentrations, and the equation of particle motion included inertial, viscous drag and electrostatic force. The Stokes number (the ratio of inertia to viscous drag force) and electrostatic number (the ratio of electrostatic force to viscous drag force) were introduced for interpreting the particle transport in an obstructed electrostatic precipitator. It was observed that the smaller particles were entrained into the recirculation zones whereas the inertial impaction for them was negligible. The deposition rate for larger particles were augmented by impaction as the obstruction height increased, even for smaller electric field strength. According to the trend of our results, we were able to define three particle size ranges in view of the dominant deposition mechanism. The electrostatic range was defined as the range that the deposition efficiency decreased with block height and the inertial range was defined as the range that the deposition efficiency increased. In addition there was an intermediate size range, the overlap range, where both inertial and electrostatic forces were important. As...
Advisors
Kim, Sang-Sooresearcher김상수researcher
Description
한국과학기술원 : 기계공학과,
Publisher
한국과학기술원
Issue Date
1996
Identifier
105476/325007 / 000895218
Language
eng
Description

학위논문(박사) - 한국과학기술원 : 기계공학과, 1996.2, [ xv, 91 p. ]

Keywords

gas-particle flow; Electrostatic Precipitator; obstruction; 장애물; 기체-입자 유동; 정전집진기

URI
http://hdl.handle.net/10203/42801
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=105476&flag=dissertation
Appears in Collection
ME-Theses_Ph.D.(박사논문)
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