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충격기류식 여과집진기에서 경험모델을 이용한 최소압력손실의 분사거리 예측The Prediction of Injection Distances for the Minimization of the Pressure Drop by Empirical Static Model in a PulseAir Jet Bag Filter

Other Titles
The Prediction of Injection Distances for the Minimization of the Pressure Drop by Empirical Static Model in a PulseAir Jet Bag Filter
Authors
서정민박정호임우택
Issue Date
2011
Publisher
한국환경과학회
Keywords
Pulse air jet bag filter; Initial pressure drop; Coke dust; Dimension analysis; Injection distance
Citation
한국환경과학회지, v.20, no.1, pp 25 - 34
Pages
10
Indexed
KCI
Journal Title
한국환경과학회지
Volume
20
Number
1
Start Page
25
End Page
34
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/23897
ISSN
1225-4517
2287-3503
Abstract
The new empirical static model was constructed on the basis of dimension analysis to predict the pressure drop according to the operating conditions. The empirical static model consists of the initial pressure drop term ([수식]) and the dust mass number term (Δp_(initial)), and two parameters (dust deposit resistance and exponent of dust mass number) have been estimated from experimental data. The optimum injection distance was identified in the 64 experimental data at the fixed filtration velocity and pulse pressure. The dust deposit resistance (K_d), one of the empirical static model parameters got the minimum value at , d=0.11m, at which the total pressure drop was minimized. The exponent of dust mass number was interpreted as the elasticity of pressure drop to the dust mass number. The elasticity of the unimodal behavior had also a maximum value at , d=0.11m, at which the pressure drop increased most rapidly with the dust mass number. Additionally, the correlation coefficient for the new empirical static model was 0.914.
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Park, Jeong Ho
건설환경공과대학 (환경공학과)
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