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dc.contributor.author김용모-
dc.date.accessioned2019-12-01T18:53:57Z-
dc.date.available2019-12-01T18:53:57Z-
dc.date.issued2017-11-
dc.identifier.citation한국연소학회지, v. 22, no. 4, page. 43-50en_US
dc.identifier.issn1226-0959-
dc.identifier.issn2466-2089-
dc.identifier.urihttp://koreascience.or.kr/article/JAKO201707153702399.page-
dc.identifier.urihttps://repository.hanyang.ac.kr/handle/20.500.11754/116110-
dc.description.abstractIn this study, the multi-environment probability density function(MEPDF) approach has been applied to numerically investigate Delft-Jet-in-Hot-Coflow(DJHC) turbulent flames under Moderate or Intense Lowoxygen Dilution (MILD) combustion condition. Computations are made for two different jet velocities(Re = 4100 and 8800). In terms of mean axial velocity, temperature, and turbulent kinetic energy, numerical results are in reasonably good agreements with experimental data even if there exist the noticeable deviations in downstream region. Based on numerical results, the detailed discussions are made for the essential features of the non-visible flame structure and MILD combustion processes.en_US
dc.description.sponsorship본 연구는 2017년 지식경제부의 재원으로 한국에 너지기술평가원(KEPTEP)의 지원을 받아 수행한 한 국형 300MW급 IGCC 실증플랜트기술개발사업 연구 과제입니다.en_US
dc.language.isoko_KRen_US
dc.publisher한국연소학회en_US
dc.subjectNon-visible flameen_US
dc.subjectMILD combustionen_US
dc.subjectTurbulence-chemistry interactionen_US
dc.subjectMulti-environment PDF approachen_US
dc.titleMulti-environment PDF 모델을 이용한 MILD 연소과정 해석en_US
dc.title.alternativeMulti-environment PDF Modeling for MILD Combustion Processesen_US
dc.typeArticleen_US
dc.identifier.doi10.15231/jksc.2017.22.4.043-
dc.relation.page6-13-
dc.relation.journal한국연소학회지-
dc.contributor.googleauthor지형근-
dc.contributor.googleauthor전상태-
dc.contributor.googleauthor김용모-
dc.contributor.googleauthorJi, Hyunggeun-
dc.contributor.googleauthorJeon, Sangtae-
dc.contributor.googleauthorKim, Yongmo-
dc.relation.code2017019021-
dc.sector.campusS-
dc.sector.daehakCOLLEGE OF ENGINEERING[S]-
dc.sector.departmentDIVISION OF MECHANICAL ENGINEERING-
dc.identifier.pidymkim-


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