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dc.contributor.author정재원-
dc.date.accessioned2017-04-18T02:11:35Z-
dc.date.available2017-04-18T02:11:35Z-
dc.date.issued2015-08-
dc.identifier.citation한국건축친환경설비학회 논문집, v. 9, NO 4, Page. 292-297en_US
dc.identifier.issn1976-6483-
dc.identifier.urihttp://www.dbpia.co.kr/Journal/ArticleDetail/NODE06519064?TotalCount=1&Seq=1&q=((%5B%EA%B3%A0%EB%B6%84%EC%9E%90%20%EC%A0%84%ED%95%B4%EC%A7%88%20%EC%97%B0%EB%A3%8C%EC%A0%84%EC%A7%80(PEMFC)%EA%B0%80%20%EC%A0%81%EC%9A%A9%EB%90%9C%20%EC%A0%9C%EC%8A%B5%EC%A6%9D%EB%B0%9C%EB%83%89%EA%B0%81%20%EC%A0%84%EC%99%B8%EA%B8%B0%20%EA%B3%B5%EC%A1%B0%EC%8B%9C%EC%8A%A4%ED%85%9C%EC%9D%98%20%EC%97%B0%EA%B0%84%201%EC%B0%A8%20%EC%97%90%EB%84%88%EC%A7%80%20%EC%A0%88%EA%B0%90%EB%9F%89%20%EB%B6%84%EC%84%9D%C2%A7coldb%C2%A72%C2%A751%C2%A73%5D))&searchWord=%EC%A0%84%EC%B2%B4%3D%5E%24%EA%B3%A0%EB%B6%84%EC%9E%90%20%EC%A0%84%ED%95%B4%EC%A7%88%20%EC%97%B0%EB%A3%8C%EC%A0%84%EC%A7%80(PEMFC)%EA%B0%80%20%EC%A0%81%EC%9A%A9%EB%90%9C%20%EC%A0%9C%EC%8A%B5%EC%A6%9D%EB%B0%9C%EB%83%89%EA%B0%81%20%EC%A0%84%EC%99%B8%EA%B8%B0%20%EA%B3%B5%EC%A1%B0%EC%8B%9C%EC%8A%A4%ED%85%9C%EC%9D%98%20%EC%97%B0%EA%B0%84%201%EC%B0%A8%20%EC%97%90%EB%84%88%EC%A7%80%20%EC%A0%88%EA%B0%90%EB%9F%89%20%EB%B6%84%EC%84%9D%5E*&searchWordCondition=%EC%9E%90%EB%A3%8C%EC%9C%A0%ED%98%95%3D%5E%24%EC%A0%84%EC%B2%B4%5E*&Multimedia=0&isIdentifyAuthor=0&Collection=0&isFullText=0&specificParam=0&SearchMethod=0&Sort=1&SortType=desc&Page=1&PageSize=50-
dc.identifier.urihttp://www.kiaebs.org/html/sub05_2.jsp-
dc.identifier.urihttp://hdl.handle.net/20.500.11754/26746-
dc.description.abstractThe main purpose of this paper is to estimate primary energy saving of polymer electrolyte membrane fuel cell (PEM fuel cell) for a liquid desiccant indirect and direct evaporative cooling assisted 100% outdoor air system (LD-IDECOAS). Also, we have suggested the PEM fuel cell performance predicted model by experiments. The fuel cell system provides the electric power and thermal energy by combining hydrogen and oxygen simultaneously. If waste heat is used, the total energy efficiency of fuel cell is up to 85%. The PEM fuel cell is suitable as a system for supplying power and heat sources to LD-IDECOAS. Using the measured load profile of the pilot system, the required electric capacity of the fuel cell system was designed at 10 kW. To suggest the performance predicted model of fuel cell, several test were conducted in the facility of pilot system. The predicted model was used to calculate the annual primary energy saving of a fuel cell. In this research, the performance of the previous systems using conventional gas-fired boiler and purchased electricity are compared with that of the proposed system to evaluate energy saving potential.en_US
dc.description.sponsorship본 연구는 한국산업기술평가관리원의 산업융합원천기술개발사업의 일환으로 수행하였음(No.R0101-15-0032)en_US
dc.language.isoko_KRen_US
dc.publisher한국건축친환경설비학회en_US
dc.subject고분자전해질 연료전지en_US
dc.subject열병합발전en_US
dc.subject제습 증발냉각en_US
dc.subject액체식 제습en_US
dc.subject성능 예측 모델en_US
dc.subject1차 에너지en_US
dc.subjectPolymer electrolyte membrane fuel cellen_US
dc.subjectCHP(combined heat and power)en_US
dc.subjectevaporative cooleren_US
dc.subjectliquid desiccanten_US
dc.subjectpredicted modelen_US
dc.subjectprimary energyen_US
dc.title고분자 전해질 연료전지(PEMFC)가 적용된 제습증발냉각 전외기 공조시스템의 연간 1차 에너지 절감량 분석en_US
dc.title.alternativeAnalysis of primary energy saving for PEM fuel cell with a liquid desiccant and evaporative cooling-assisted all outdoor air systemen_US
dc.typeArticleen_US
dc.relation.no4-
dc.relation.volume9-
dc.relation.page292-297-
dc.relation.journal한국건축친환경설비학회 논문집-
dc.contributor.googleauthor조수영-
dc.contributor.googleauthor정재원-
dc.contributor.googleauthorJo, Su-Young-
dc.contributor.googleauthorJeong, Jae-Weon-
dc.relation.code2015041623-
dc.sector.campusS-
dc.sector.daehakCOLLEGE OF ENGINEERING[S]-
dc.sector.departmentDEPARTMENT OF ARCHITECTURAL ENGINEERING-
dc.identifier.pidjjwarc-
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > ARCHITECTURAL ENGINEERING(건축공학부) > Articles
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