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      KCI등재

      소형 집진기용 접선식 및 축류식 사이클론 성능비교

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      https://www.riss.kr/link?id=A105580292

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      다국어 초록 (Multilingual Abstract)

      The tangential and axial cyclones were fabricated using a 3D printer and the total collecting efficiency, cut-diameter, and pressure drop characteristics of the two types of cyclones with the same inlet area were investigated experimentally. The results show that the total collecting efficiency tends to increase as the inlet velocity increases. However, at a 20m/s condition of the tangential cyclone, the collected particles were re-entrained to the ascending vortex flow, resulting in a decrease of the total collecting efficiency. In the axial cyclone, the cross-sectional area is designed to increase at the inlet and the velocity is reduced, so that the re-entrainment effect does not appear in this study. The pressure loss of the tangential cyclone was larger than that of the axial cyclone. The cut-diameter tends to decrease with increasing the inlet velocity in two types of cyclones, except for the 20m/s condition of the tangential cyclone.
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      The tangential and axial cyclones were fabricated using a 3D printer and the total collecting efficiency, cut-diameter, and pressure drop characteristics of the two types of cyclones with the same inlet area were investigated experimentally. The resul...

      The tangential and axial cyclones were fabricated using a 3D printer and the total collecting efficiency, cut-diameter, and pressure drop characteristics of the two types of cyclones with the same inlet area were investigated experimentally. The results show that the total collecting efficiency tends to increase as the inlet velocity increases. However, at a 20m/s condition of the tangential cyclone, the collected particles were re-entrained to the ascending vortex flow, resulting in a decrease of the total collecting efficiency. In the axial cyclone, the cross-sectional area is designed to increase at the inlet and the velocity is reduced, so that the re-entrainment effect does not appear in this study. The pressure loss of the tangential cyclone was larger than that of the axial cyclone. The cut-diameter tends to decrease with increasing the inlet velocity in two types of cyclones, except for the 20m/s condition of the tangential cyclone.

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      참고문헌 (Reference)

      1 이중섭, "축상유입식 사이클론의 베인 유출각도에 따른 절단입경 예측에 관한 수치해석" 한국기계가공학회 11 (11): 111-117, 2012

      2 이중섭, "접선유입식과 축상유입식 사이클론의 집진효율 비교" 한국기계가공학회 10 (10): 115-121, 2011

      3 "http://www.heumannenviro.com"

      4 Zuo, Z., "The Structure Optimization Design of Anti Re-entrainment Cone in Cyclone Separator" 491-494, 2015

      5 Ogawa, A., "Re-entrainment of Dusts from the Dust Layer on the Deposited Dusts in the Cyclone Dust Collectors" 2 (2): 305-314, 1984

      6 Cooper, C. D., "Air Pollution Control: A Design Approach" Waveland Press 135-159, 2011

      7 Shapiro, M., "Air Classification of Solid Particles: a Review" 44 : 279-285, 2005

      8 Malvern Instruments Worldwide, "A Basic Guide to Particle Characterization" Malvern Instruments Limited 1-26, 2012

      1 이중섭, "축상유입식 사이클론의 베인 유출각도에 따른 절단입경 예측에 관한 수치해석" 한국기계가공학회 11 (11): 111-117, 2012

      2 이중섭, "접선유입식과 축상유입식 사이클론의 집진효율 비교" 한국기계가공학회 10 (10): 115-121, 2011

      3 "http://www.heumannenviro.com"

      4 Zuo, Z., "The Structure Optimization Design of Anti Re-entrainment Cone in Cyclone Separator" 491-494, 2015

      5 Ogawa, A., "Re-entrainment of Dusts from the Dust Layer on the Deposited Dusts in the Cyclone Dust Collectors" 2 (2): 305-314, 1984

      6 Cooper, C. D., "Air Pollution Control: A Design Approach" Waveland Press 135-159, 2011

      7 Shapiro, M., "Air Classification of Solid Particles: a Review" 44 : 279-285, 2005

      8 Malvern Instruments Worldwide, "A Basic Guide to Particle Characterization" Malvern Instruments Limited 1-26, 2012

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      학술지 이력

      학술지 이력
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      2020-01-01 평가 등재학술지 선정 (재인증) KCI등재
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      2012-04-01 평가 등재후보 탈락 (기타)
      2010-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2008-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2006-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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