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      층류 부상 화염의 화염부상 높이 감소 구간에서 교류 전기장이 인가된 화염에 관한 영향

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      https://www.riss.kr/link?id=A103527331

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      다국어 초록 (Multilingual Abstract)

      An experimental study has been conducted to elucidate the effect of AC electric field on behaviors of laminar lifted flame in nitrogen-diluted methane coflow-jets. Our concerns are focued on the regime to show a decrease in liftoff height, HL with increasing nozzle exit velocity, UO (hereafter, decreasing-HL). The HL with UO near flame extinction were measured by varying the applied AC voltage, VAC and frequency, fAC in a single electrode configuration. The behavior of HL with a functional dependency of VAC and fAC was categorized into two regime : (I) HL decreased for nozzle diameter, D = 1.0 mm, and (II) HL increased in the increase of fAC for a fixed VAC in a D = 4.0, 8.4 mm. The lifted flames in decreasing-HL region was unstable in high voltage regimes while the HL showed a decreasing tendency with UO except them. Such behaviors in HL were also characterized by functional dependencies of related physical parameters such as VAC, fAC, UO, fuel mole fraction (XF.O) and D.
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      An experimental study has been conducted to elucidate the effect of AC electric field on behaviors of laminar lifted flame in nitrogen-diluted methane coflow-jets. Our concerns are focued on the regime to show a decrease in liftoff height, HL with inc...

      An experimental study has been conducted to elucidate the effect of AC electric field on behaviors of laminar lifted flame in nitrogen-diluted methane coflow-jets. Our concerns are focued on the regime to show a decrease in liftoff height, HL with increasing nozzle exit velocity, UO (hereafter, decreasing-HL). The HL with UO near flame extinction were measured by varying the applied AC voltage, VAC and frequency, fAC in a single electrode configuration. The behavior of HL with a functional dependency of VAC and fAC was categorized into two regime : (I) HL decreased for nozzle diameter, D = 1.0 mm, and (II) HL increased in the increase of fAC for a fixed VAC in a D = 4.0, 8.4 mm. The lifted flames in decreasing-HL region was unstable in high voltage regimes while the HL showed a decreasing tendency with UO except them. Such behaviors in HL were also characterized by functional dependencies of related physical parameters such as VAC, fAC, UO, fuel mole fraction (XF.O) and D.

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      목차 (Table of Contents)

      • ABSTRACT
      • 1. 서론
      • 2. 실험 방법
      • 3. 결과 및 논의
      • 4. 결론
      • ABSTRACT
      • 1. 서론
      • 2. 실험 방법
      • 3. 결과 및 논의
      • 4. 결론
      • References
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      참고문헌 (Reference)

      1 S. M. Lee, 33 (33): 1703-1709, 2005

      2 S. H. Chung, "Stabilization, propagation and instability of tribrachial triple flame" 31 : 877-, 2007

      3 B. J. Lee, "Stabilization of Lifted Tribrachial Flames in a Laminar Nonpremixed Jet" 109 : 163-, 1997

      4 R. W. Bilger, "Stabilization mechanisms of lifted laminar flames in axisymmetric jet flows" 122 : 377-399, 2000

      5 M. S. Cha, "Premixed Combustion Under Electric Field in a Constant Volume Chamber" 40 : 3131-3138, 2012

      6 S. H. Chung, "On the Characteristics of Laminar Lifted Flames in a Non-premixed Jet" 86 : 62-, 1991

      7 S. K. Ryu, "Observation of multi-scale oscillation of laminar lifted flames with low-frequency AC electric fields" 157 (157): 25-32, 2010

      8 S. H Won, "Normal and Microgravity Experiment of Oscillating Lifted Flames on Coflow" 29 : 37-44, 2002

      9 N. Peters, "Liftoff characteristics of turbulent jet diffusion flames" 21 : 423-429, 1983

      10 S. H. Won, "Lifted Flame Stabilization in Developing and Developed Regions of Coflow Jets for Highly Diluted Propane" 28 : 2093-2099, 2000

      1 S. M. Lee, 33 (33): 1703-1709, 2005

      2 S. H. Chung, "Stabilization, propagation and instability of tribrachial triple flame" 31 : 877-, 2007

      3 B. J. Lee, "Stabilization of Lifted Tribrachial Flames in a Laminar Nonpremixed Jet" 109 : 163-, 1997

      4 R. W. Bilger, "Stabilization mechanisms of lifted laminar flames in axisymmetric jet flows" 122 : 377-399, 2000

      5 M. S. Cha, "Premixed Combustion Under Electric Field in a Constant Volume Chamber" 40 : 3131-3138, 2012

      6 S. H. Chung, "On the Characteristics of Laminar Lifted Flames in a Non-premixed Jet" 86 : 62-, 1991

      7 S. K. Ryu, "Observation of multi-scale oscillation of laminar lifted flames with low-frequency AC electric fields" 157 (157): 25-32, 2010

      8 S. H Won, "Normal and Microgravity Experiment of Oscillating Lifted Flames on Coflow" 29 : 37-44, 2002

      9 N. Peters, "Liftoff characteristics of turbulent jet diffusion flames" 21 : 423-429, 1983

      10 S. H. Won, "Lifted Flame Stabilization in Developing and Developed Regions of Coflow Jets for Highly Diluted Propane" 28 : 2093-2099, 2000

      11 G. T. Kim, "Flow instability in laminar jet flames driven by alternating crrent electric fields" 1-8, 2016

      12 J. Lawton, "Electrical aspects of combustion" Clarendon Press 283-, 1970

      13 M. K. Kim, "Electric filed effect on liftoff and blow-off of nonpremixed laminar jet flames in a coflow" 157 : 17-, 2010

      14 M. K. Kim, "Effect of electric fields on the stabilization of premixed laminar Bunsen flames at low AC frequency: Biionic wind effect" 159 : 1151-, 2012

      15 S. H. Won, "Effect of electric fields on the propagation speed of tribrachial flames in coflow jets" 152 : 496-, 2008

      16 S. H. Won, "Effect of electric field on reattachment and propagation speed of tribrachial flames in laminar coflow jets" 31 : 963-, 2007

      17 N. P. Sarpkal, "Decreasing Liftoff Height Regions on Diluted Methane Co-flow Jet Flames" 2016

      18 F.J. Weinberg, "Advanced Combustion Method" Academic Press 1989

      19 Y. Xiong, "AC electric field induced vortex in laminar coflow diffusion flames" 35 : 3513-3520, 2015

      20 Narayan P. Sapkal, "A Study on Laminar Lifted Jet Flames for Diluted Methane in Co-flow Air" 한국연소학회 20 (20): 1-7, 2015

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 재인증평가 신청대상 (재인증)
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2012-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2008-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2007-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
      2005-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.31 0.31 0.29
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.27 0.25 0.632 0.05
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