• Title/Summary/Keyword: 최종에너지

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석유산업의 국제경쟁력 강화 방안 (상)

  • Lee, Dal-Seok
    • Korea Petroleum Association Journal
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    • no.2 s.180
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    • pp.36-41
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    • 1996
  • 이 자료는 에너지경제연구원의 '95년 출연과제 최종발표회에서 발표된 것으로 3회에 걸쳐 전재한다.<편집자 주>

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석유산업의 국제경쟁력 강화 방안 (중)

  • Lee, Dal-Seok
    • Korea Petroleum Association Journal
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    • no.3 s.181
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    • pp.78-87
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    • 1996
  • 이 자료는 에너지경제연구원의 95년 출연과제 최종발표회에서 발표된 것으로 3회에 걸쳐 전재한다. <편집자 주>

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석유산업의 국제경쟁력 강화방안 (하)

  • Lee, Dal-Seok
    • Korea Petroleum Association Journal
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    • no.4 s.182
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    • pp.78-85
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    • 1996
  • 이 자료는 에너지경제연구원의 95년 출연과제 최종발표회에서 발표된 것으로 3회에 걸쳐 전재한다. <편집자 주>

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The Analysis on Energy Efficiency in the Residential Sector (가정부문 에너지 효율 분석)

  • Na, In-Gang;Lee, Sung-Keun
    • Environmental and Resource Economics Review
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    • v.19 no.1
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    • pp.129-157
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    • 2010
  • This paper is intended to evaluate energy efficiency policy in demand side, to assess the residential sector's energy efficiency policy and to analyze the system of energy efficiency practices. We examined residential energy consumption over the period 1990~2006. The decomposition method in the analysis was a logarithmic mean Divisia index (LMDI) techniques to decompose changes in energy intensity. First of all, the energy use in residential sector was adjusted to correct weather-induced variations in energy consumption, because adjustments for normal weather patterns facilitated inter-temporal comparison of intensity. The analysis on the residential sector shows that the overall energy intensity of the residential sector declined at an average 1.0% per year, while the structure effect increased by 1.8% per year, and the activity effect increased by 0.7% per year. In other words, the decline of floor space, number of household, and appliance ownership per capita has an effect on increase in residential consumption. The improvement in energy efficiency had strong contribution on the decrease of energy consumption. We find that the general results of analysis on residential energy are similar to those of IEA. The energy efficiency policy in residential sector is assessed to obtain some results during 1990~2006. In residential sector, structural variables such population per household, diffusion of appliance and activity factor such as population contributed to the increase of energy consumption while energy intensity effect induced the decrease of energy consumption. These findings are consistent with international trend as well as our prior expectation.

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Decomposition of Direct and Indirect Energy Consumption Growth in Korea from 1990 to 2000 (한국 가정부문 직간접 에너지소비의 증가요인 분석: 1990~2000)

  • Park, Hi-Chun
    • Environmental and Resource Economics Review
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    • v.15 no.3
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    • pp.531-553
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    • 2006
  • As energy conservation can be realized through changes in the composition of goods and services consumed, there is a need to assess indirect and total household energy requirements. The Korean household sector was responsible for about 55% of the country's primary energy requirement in the period from 1990 to 2000. And more than 60% of household energy requirement was indirect. Thus, indirect and total rather than direct household energy requirements should be the target of energy conservation policies. Increases in household consumption expenditure were responsible for a relatively high growth of energy consumption. Switching to consumption of less energy intensive products and decrease in energy intensities of products contributed substantially to reduce the increase in total household energy requirement.

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Zircaloy-4의 크립거동

  • 김영석;정연호
    • Proceedings of the Korean Nuclear Society Conference
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    • 1996.05c
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    • pp.277-283
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    • 1996
  • 최종 pilgering 단계에서의 가공량이 서로 다른 Zircaloy-4 피복관을 대상으로 350-50$0^{\circ}C$, 원주응력 80-150 N/$\textrm{mm}^2$의 이축응력 조건에서 크립시험이 수행되었다. Zircaloy-4 피복관의 크립변형률 및 크립변형량은 최종 pilgering 단계에서의 가공량에 비례하여 커졌다. 이를 토대로 크립모델 제시되었으며 제시된 모델은 Zircaloy-4 피복관의 크립거동을 매우 잘 모사하였다. Zircaloy-4 피복관의 크립활성화 에너지는 $\alpha$-zirconium에서의 자기확산의 활성화에너지 값과 거의 동일한 60 Lcal/mole 이므로, 크립지배기구는 전위상승이다. 따라서 가공량에 따라 크립변형률 및 크립변형률의 증대는 가공량에 따른 기지상내의 점결함의 증가 때문으로 사료된다.

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An Analysis of Changes in Power Generation and Final Energy Consumption in Provinces to Achieve the Updated Nationally Determined Contribution (NDC) (국가 온실가스 감축목표(NDC) 상향안 달성을 위한 17개 광역시도별 발전 및 최종에너지 소비 변화 분석)

  • Minyoung Roh;Seungho Jeon;Muntae Kim;Suduk Kim
    • Environmental and Resource Economics Review
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    • v.31 no.4
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    • pp.865-885
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    • 2022
  • Korean government updated her Nationally Determined Contribution (NDC) in 2021 and announced the target and various measures for reductions. Among the many issues, final energy demand and renewable energy power mix for 17 provinces to achieve the target are being analyzed using GCAM-Korea. Simulation results show that final energy demand of 2030 is approximated at the similar level to that of 2018. This is being enabled by the conservation of coal with higher electrification especially in industry sector. Higher power demand with lower coal consumption in final energy consumption is shown to be provided by 33.1% of renewable, 24.6% of gas, and 18.0% of nuclear power generation in 2030. Meanwhile, the share of coal-fired power generation is expected to be reduced to 12.8%. Major future power provider becomes Gyeongbuk (Nuclear), Gyeonggi (Gas), Jeonnam (Nuclear, Gas) and Gangwon (PV, Wind), compared to one of current major power provider Chungnam (Coal). This analysis is expected to provide a useful insight toward the national and provincial energy and climate change policy.

Comparative Analyses of Korean Energy Balance Tables from KEEI and IEA (in 2009) (한국과 IEA 에너지밸런스 표의 비교 분석연구 (2009년도를 중심으로))

  • Sohn, Joongchan;Kim, Suduk
    • Environmental and Resource Economics Review
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    • v.24 no.1
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    • pp.109-139
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    • 2015
  • Referring to many previous research on the statistical differences in the figures of energy balance table between that of KEEI and IEA, a study is conducted to provide with a framework for proper comparison, followed by the actual calculation of the differences. Major differences are found for energy oil with its size of over 32% differences in primary energy supply and in energy transformation sectors. In final energy consumption sector, naptha consumption for petro-chemical industry shows 14.58% differences. Overall final energy consumption figure of KEEI after its adjustment to net calorific value as is the case of that of IEA is 3.58% larger than that of IEA. Considering the fact that energy balance table provides the basic information for the understanding of energy sector, further studies seem to be necessary for proper adjustment of current status.