• Title/Summary/Keyword: 리트로피트

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Retrofit of Safety Class 1E Emergency Diesel Generator in Nuclear Power Plant (원자력발전소 안전 등급 1E 비상디젤발전기 리트로피트 (Retrofit))

  • Kim, Chul-Hyo;Chang, Choong-Koo
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.689-690
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    • 2015
  • 국내 최초 원전인 고리1호기는 지난 2007년 30년의 운전수명을 마친 뒤 정부의 안전점검을 거쳐 10년간 연장운전에 들어갔다. 이 과정에서 원전의 비상 전원 계통 신뢰성 확보를 위해 설계수명을 초과한 35년 된 노후 비상디젤발전기(Emergency Diesel Generator, 이하 EDG)를 지난 2013년 4월부터 9월까지 약 6개월에 걸쳐 교체하게 되었으며, 국내 원전 EDG 총 42대 중 18대가 20년 넘게 운영되고 있고, 2025년까지 고리 1호기를 후속으로 월성1호기, 고리2호기, 고리3호기, 고리4호기, 한빛1호기 순으로 40년 승인된 운전 인허가 기간이 만료된다.[1]. 본 연구에서, Class 1E EDG 교체 시 신규 EDG 설계기준, 용량결정, 해석 및 평가에 대한 기술적 방법들을 고리1호기의 사례를 통해 고찰하였다.

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Status of the Recent Applications of Carbon Fiber (탄소섬유의 최신 응용 동향)

  • Lee, Tae-Ho;Kil, Sang-Cheol
    • Journal of the Korea Institute of Military Science and Technology
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    • v.15 no.4
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    • pp.492-501
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    • 2012
  • In this paper, the status of the recent applications of carbon fiber was investigated through the published papers, informations or data of the internet etc. The production cost of the carbon fiber will be lowered and in the other hand the quality would be upgraded. Therefore in the automobile area, the use of the carbon fiber will be increased, specially for the high quality cars and the sports cars. Also the structures, wings and many secondary parts of the commercial airplanes will be made of carbon fibers more and more. The carbon fiber applications are extended to many fields including ship buildings like as boats, canoes and retrofitting in civil engineering, sporting goods, instruments etc.

Energy Saving Effect and Improvement of Indoor Thermal Environment through the Window Retrofit (창호 리트로피트를 통한 에너지 절감 및 실내 열환경 개선 효과 분석에 관한 연구)

  • Jeong, Jin-Woo;Ju, Jung-Hoon;Cho, Dong-Woo
    • Journal of the Korean Solar Energy Society
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    • v.38 no.3
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    • pp.29-36
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    • 2018
  • The goal of this study is to retrofit the windows of residential buildings and to activate the green remodeling by verifying energy saving and indoor thermal environment. As a result of analysis of the energy saving effect of 458 units window retrofits, it was possible to reduce the energy requirement by 48.20% ~ 54.97%. According to the improvement on indoor environment, it was possible to operate by reducing heating temperature and supply time. The actual gas consumption of the heating period was reduced by 25% compared with that of the window retarder to save 28,968 thousand won of heating energy cost. Resident's satisfaction surveys were conducted one year after window retrofit. More than 80% of the respondents answered that they satisfied the improvement on window performance, indoor thermal environment and indoor sound environment. As a result, we verified the energy saving effect and the improvement on the indoor environment through window retrofits.