• Title/Summary/Keyword: Energy Conservation Technology

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Analysis of Dielectric Breakdown of Hot SF6 Gas in a Gas Circuit Breaker

  • Kim, Hong-Kyu;Chong, Jin-Kyo;Song, Ki-Dong
    • Journal of Electrical Engineering and Technology
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    • v.5 no.2
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    • pp.264-269
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    • 2010
  • This paper presents the analysis of the dielectric characteristics of a hot $SF_6$ gas in a gas circuit breaker. Hot gas flow is analyzed using the FVFLIC method considering the moving boundary, material properties of real $SF_6$ gas, and arc plasma. In the arc model, the re-absorption of the emitted radiation is approximated with the boundary source layer where the re-absorbed radiation energy is input as an energy source term in the energy conservation equation. The breakdown criterion of a hot gas is predicted using the critical electric field as a function of temperature and pressure. To validate the simulation method, breakdown voltage for a 145kV 40kA circuit breaker was measured for various conditions. Consistent results between the simulation and experiment were confirmed.

A Study on the Efficient peak Demand Control Method in Office Buildings (건물(建物) 최대수요전력(最大需要電力)의 효율적(效率的) 운용(運用) 방안(方案))

  • Kim, Se-Dong
    • Proceedings of the KIEE Conference
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    • 1993.07b
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    • pp.1088-1090
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    • 1993
  • This paper shows efficient peak demand control method in office buildings. With a rapid growth of national economics and living standard, electrical energy consumption markedly increased. Expecially, it is increased electrical energy comsumption in the office buildings and thus an energy conservation through efficient use of electricity became more important. From the data of electric equipment capacity and electric power consumption for 96 buildings, current levels of demand factor and a growth trend of peak loads by office buildings were surveyed and analyzed. In addition the efficient peak demand control method in office buildings were studied.

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Modeling and Control of integrated Engine Plant

  • Nakajima, Takayuki;Zhang, Feifei;Ito, Masanori;Mishima, Kiyoshi
    • 제어로봇시스템학회:학술대회논문집
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    • 2005.06a
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    • pp.830-833
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    • 2005
  • The diversification of the regulating system was promoted with the development of the computer technology. On the other hand, environmental problems and the energy conservation problem are being valued as for needs of the society. Our research was able to be achieved in such a situation.

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The Conservation Value of Endangered Marine Species: The Case of the Ellobium Chinense (보호대상해양생물의 보전가치 추정: 대추귀고둥을 대상으로)

  • Lim, Seul-Ye;Lee, Chang-Su;Kim, Min-Seop;Yoo, Seung-Hoon
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.21 no.6
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    • pp.645-654
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    • 2015
  • This paper attempts to quantitatively assess the conservation value of Ellobium chinense (EC), which belongs to the endangered marine species designated by Ministry of Oceans and Fisheries. To this end, we apply the contingent valuation (CV) method, an economic technique of valuing a non-market goods such as EC. A national survey of randomly selected 1,000 households was administered in order to derive the public's willingness to pay (WTP) for conserving EC. One-and-one-half-bound model was adopted to elicit the WTP responses and a spike model was employed to deal with the zero WTP responses. The results show that the conservation value of EC is estimated to be 2,346 won per household per year that is statistically significant at the 1% level. Expanding the value to the national population gives us an annual value of 43.8 billion won. We can judge that the Korean people are willing to pay a significant amount to conserve EC.

A Survey on the M&V to guarantee the energy saving performance of ESCO (ESCO 에너지절약 M&V 방법의 선택 및 적용방안 연구)

  • Lim, Ki Choo
    • Journal of Energy Engineering
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    • v.23 no.4
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    • pp.123-129
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    • 2014
  • ESCO industry should guarantee the energy saving performance with M&V such as developed countries. The application of the ESCO M&V is a necessary condition on energy saving performance. This study recommends a goal, direction, and order of application and suggests selection of M&V between option A, option B, option C, option D by energy conservation technology in Korea, with reference to the examples from IPMVP and applied in US and Japan. In the future, it is needed to study on the guideline for plan report and result report of M&V based on a goal, direction, and selection of M&V option.

General Derivation of Two-Fluid Model (2상 유동 모델의 일반적인 유도)

  • Hee Cheon No
    • Nuclear Engineering and Technology
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    • v.16 no.1
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    • pp.1-10
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    • 1984
  • General time-volume averaged conservation equations and jump conditions for two-phase flows are derived here. The time-averaged equations for a single phase region in two-phase flow are obtained from local instant balance equations by a technique often used for single phase turbulent flow equations. The results obtained by integrating the time averaged equations over a flow volume are spatially averaged twice; first, they are averaged over a single phase region of the k-th phase and then averaged over the total volume of the k-th phase, in a flow volume. The mass, momentum, and energy conservation equations are obtained from the general time-volume averaged equations. The advantages of the present model are explained by comparing it with Ishii's model (1) and Banerjee's model (2). Finally, the assumptions and approximate terms of the equations of the THERMIT-6S are clarified.

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Air Tightness Performance of Residential Timber Frame Buildings

  • Kim, Hyun-Bae;Park, Joo-Saeng;Hong, Jung-Pyo;Oh, Jung-Kwon;Lee, Jun-Jae
    • Journal of the Korean Wood Science and Technology
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    • v.42 no.2
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    • pp.89-100
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    • 2014
  • Energy consumption statistics in 2005 from the Korea Energy Management Corporation show that building energy usage was about 24.2% of total domestic energy consumption, and 64% of total building energy usage was consumed by residential buildings. Thus, about 10% of total domestic energy consumption is due to the heating of residential buildings. Building energy can be calculated by the configuration of the building envelope and the rate of infiltration (the volume of the infiltration of outdoor air and the leakage of indoor air), and by doing so, the annual energy usage for heating and cooling. Therefore, air-tightness is an important factor in building energy conservation. This investigate air infiltration and various factors that decrease it in timber frame buildings and suggest ways to improve air-tightness for several structural types. Timber frame buildings can be classified into light frame, post and beam, and log house. Post and beam includes Han-ok (a Korean traditional building). Six light frame buildings, three post and beam buildings, one Korean traditional Han-ok and a log house were selected as specimens. Blower door tests were performed following ASTM E779-03. The light frame buildings showed the highest air-tightness, followed by post and beam structures, and last, log houses.

Energy Consumption in Mushroom Canning Factory (양송이통조림 가공중의 에너지소비량 조사연구)

  • Lee, Dong-Sun;Park, Know-Hyun;Shin, Hyu-Nyun;Shin, Dong-Hwa
    • Korean Journal of Food Science and Technology
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    • v.13 no.4
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    • pp.328-333
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    • 1981
  • As a step to investigate energy conservation in canneries, energy consumption pattern and energy usages of various unit operations in a mushroom cannery were examined. The results are as follows; 1. In the mushroom cannery, fuel oil and electricity were used mainly for temperature control of mushroom growing house in winter and various cultivation operation respectively. To grow and process 1 kg of mushroom, thermal energy of 4634 kcal and electrical energy of 0. 116 kwh were consumed. About 80% of all energy was consumed for cultivation. 2. Steam qualities at each respective processing line were $92{\sim}94%$, giving no great differences among lines. 3. As a direct energy in 1 day processing operations of 8 tons of mushroom, thermal energy of $301.5{\times}10^{4}kcal$ and electrical energy of 60.1 kwh were used. The energy intensive operations were blanching (35%) and retorting (38%).

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The Advanced Case Study for Investigation on Application of BIPV on Tall Building (초고층빌딩의 BIPV 적용성 검토를 위한 선진 사례 조사)

  • Lee, Jong-Min;Seok, Ho-Tae;Yang, Jeong-Hoon
    • 한국태양에너지학회:학술대회논문집
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    • 2009.11a
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    • pp.155-160
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    • 2009
  • The increasingly high prices for oil, the exhaustion of fossil fuels as well as concern about global warming are driving rapid growth of alternative sources of energy in the world. The active solution for global environment and exhaustion of energy sources is to develop and popularize the technologies to use natural energy such as sunlight, wind, and water. PV(Photovoltaic) modules are efficient devices that has been considered a logical material for use in buildings. Recent advanced BIPV(Building Integrated PV) technology have rapidly made PVs suitable for direct integration into construction in the world. Recently, building has been higher and higher. Tall buildings have many advantages for BIPV such as wide facade area and no shading effect by the surrounding buildings. However. BIPV has not been applied for tall building facade yet. Therefore, the purpose of the research is to develop suitable BIPV for tall buildings and to put these technologies to practical use. Therefore, the purpose of the study is to investigate unification of BIPV to curtain wall to apply BIPV on tall building through research into advanced application of overseas BIPV cases.

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A Study on the Design of Smart Farm Heating Performance using a Film Heater (필름 히터를 이용한 스마트 팜 난방 성능 설계에 관한 연구)

  • W. Kim
    • Transactions of Materials Processing
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    • v.32 no.3
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    • pp.153-159
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    • 2023
  • This paper presents the optimal design of a heating system using radiant heating elements for application in smart farms. Smart farming, an advanced agricultural technology, is based on artificial intelligence and the internet of things and promotes crop production. Temperature and humidity regulation is critical in smart farms, and thus, a heating system is essential. Radiant heating elements are devices that generate heat using electrical energy. Among other applications, radiant heating elements are used for environmental control and heating in smart farm greenhouses. The performance of these elements is directly related to their electrical energy consumption. Therefore, achieving a balance between efficient electrical energy consumption and maximum heating performance in smart farms is crucial for the optimal design of radiant heating elements. In this study, the size, electrical energy supply, heat generation efficiency, and heating performance of radiant heating elements used in these heating systems were investigated. The effects of the size and electrical energy supply of radiant heating elements on the heating performance were experimentally analyzed. As the radiant heating element size increased, the heat generation efficiency improved, but the electrical energy consumption also increased. In addition, increasing the electrical energy supply improved both the heat generation efficiency and heating performance of the radiant heating elements. Based on these results, a method for determining the optimal size and electrical energy supply of radiant heating elements was proposed, and it reduced the electrical energy consumption while maintaining an appropriate heating performance in smart farms. These research findings are expected to contribute to energy conservation and performance improvement in smart farming.