• Title/Summary/Keyword: 에너지 공급 설비

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A Case Study on Green Pricing Program in USA (미국 Green Pricing 프로그램 평가 사례분석 및 시사점)

  • Lee, Ye-Ji
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.11a
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    • pp.298-298
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    • 2009
  • 미국의 DOE(Department of Energy)산하 EERE(Energy Efficiecy & Renewable Energy)에서 신재생 에너지 프로그램 평가를 하고 있다. 특히 General program evaluation Guide에는 많은 평가기관에서 제안되었던 5가지 방법 중 Outcome 평가는 프로그램의 목적을 얼마나 달성했는지를 측정하는 것으로 일정한 기간이 지난 후 프로그램의 목적을 달성함으로써 얻어지는 결과를 추산함으로써 그 기간 동안 프로그램이 의도했던 목적을 얼마나 잘 수행했는지를 보여준다. 한국에서 시행되고 있는 신재생에너지 보급 프로그램의 성과를 정량화 분석을 통하여 평가할 수 있어 국내 적용성이 크다. 본 연구에서는 미국 에너지부 EERE로부터 지원받아 NREL(National Renewable Energy Laboratory)에서 실행한 Utility Green Pricing 프로그램을 사례 분석하였다. Utility Green Pricing 프로그램은 1993년 시작되었으며 2002년 말 미국 전역의 300여개 시설을 통한 90개의 프로그램을 발전시킴으로써 소비자가 자발적으로 재생에너지 발전을 지원하기 위한 한 방법으로 최근 이런 프로그램 수는 증가하고 있다. 2002년 말 기준으로 국가 전기 사용자의 20%, 대략 270,000명의 소비자가 선택하였고 2002년 290MW급 재생에너지 설비용량과 2003년 140MW급 시설을 담당하였으며 미국 이외에 캐나다, 일본, 호주, 12개 유럽 국가들이 시행하고 있다. 이 프로그램 목표는 어떤 프로그램이 green pricing 프로그램의 소비자 참가와 재생에너지 구매의 최대화를 돕는지를 제공하는 것으로 Data Pool은 90개 프로그램 중 더 이상 실행하지 않는 4개를 제외한 86개로 응답률은 77%였다. 분석대상은 거주자와 비거주자로써 자료는 2003년 초 66개의 green pricing 프로그램의 질문서를 토대로 도출되었다. Green Pricing 프로그램 질문서는 참여, 지난해 판매, 재생에너지 공급, 할 증금(초과 구매력), 프로그램 디자인과 실행, 마케팅, 소비자를 위한 부가서비스 이렇게 총 7부분으로 나누어져있다. 특히 거주자와 비거주자와 참여, 재생에너지 판매량, 프로그램 수명, 사용하는 재생에너지의 종류, 프로그램 가격, 비용 할증료, 프로그램 평가의 종류, 프로그램 마케팅 노력, 참여자에게 제공되는 부수적 가치와 관련된 자료를 모으기 위해 실행되었다. 종속적 변수로 프로그램 유효성 측정과 관련된 비/거주자 참여와 재생에너지 구매를 선택하였으며 독립적 변수로 프로그램 디자인과 마케팅 특징을 들었다. 분석방법으로는 이변성과 다변성 통계적 분석을 이용하였다. 이변성 분석은 쉽게 개별적 독립 변수와 종속변수와의 직접적 관계를 보여주며 다변성 분석은 보다 정확한 영향 산정을 위해 선택한 복합적 독립변수를 이용하였다. 프로그램 유효성 측정을 위해 비/거주자 참여 퍼센트와 재생에너지 구매 퍼센트를 구하였다. 그러나 이 분석에 몇 가지 제한점이 있었다. 소비자 중 국외자의 영향으로 분석에 많은 영향을 주지 않지만 single utility 프로그램은 비거주자참여율과 재생에너지 구매율에 영향을 끼칠 가능성이 있으며 독립/설병변수를 프로그램성공을 위해 거듭 강조하지만 빠지거나 무딘 변수는 여전히 존재한다. 분석 대상이 2002년까지를 대상으로 하기 때문에 시간상의 지체 역시 문제가 될 수 있다. 다중공산성 역시 독립변수간의 상관관계가 나타나면서 발생된다. 하지만 몇 가지 재미있는 결과를 얻어냈다. 프로그램 기간이 소비자 응답에 영향을 미치며 초기 거주고객의 높은 구매력이 지속된다는 것이다. 가격 할증료와 최소 월사용료는 프로그램 성공 초기 결정요인이 되지 않는다. 작은 시설이 성공 달성가능성이 더 큰 것으로 나타났으며 비거주자의 사적 이득 제공 역시 성공 강화에 영향을 끼쳤다.

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Analysis on Momentary Voltage Dips with the Interconnection Operation of Utility-interactive Cogneration Systems Considering Their Generator Type (발전기 형태를 고려한 열병합발전시스템의 배전계통 연계운전시의 순시전압변동 해석)

  • 최준호;김재철
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.14 no.4
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    • pp.23-30
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    • 2000
  • Cogeneration systems are seen as a significant innovation for dispersed energy generation since they are both environmentally friendly and has comparatively high degrees of efficiency. It is especially suited for the decentralized provision of electricity and heat. However, it causes operational problems such as voltage regulation, voltage variation, protection and safety. Especially, it is expected that the interconnection/disconnection operation of cogeneration system has an effect on distribution voltage regulation and variation. Recently, with the increased use of customer-owned computers and other sensitive electronic equipment, electric power quality has become an important concerns. Therefore, the voltage quality problems with cogeneration system should be investigated because the voltage quality is an important part of electrical power quality. In this paper, the momentary voltage dips associated with the interconnection/disconnection operation of cogeneration system are analyzed, including restraint solutions at the customer level. In addition, the unit capacity of cogeneration systems per feeder are evaluated from the view point of momentary voltage variations. The results of this paper are useful analysis data for interconnection standards/guidelines of cogeneration systems and dispersed generation (DG)

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A Study on the Analysis of Efficiency for Underground Distribution Equipment by Installment Ways (지중배전공사에 설치되는 기기의 설치위치에 따른 영향 분석에 관한 연구)

  • Kim, Joon-Eel;Kim, Dong-Myung
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.23 no.12
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    • pp.83-89
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    • 2009
  • The environment of electrical power industry is now faced on problems such as electric rates, an increasing sensitivity in society with environmental issues and energy factors. Up to now, reliability is greatly influenced by maintenance and environmental factors that are unique to the electric utilities. The reliability is a characteristic assigned to the electric power systems's function which is related to the concept of installment of equipment. Therefore this reports's key finding is that it is important that the utilities track their individual components' value over investment expense of their installed components. This can be accomplished to consider the cases of foreign electric power companies and take into account the various possible installment ways of equipment in Korea. These results are expected to be used as a reference material for design underground distribution facilities and future applications.

Analysis of cause of engine failure during power generation using biogas in sewage treatment plant (하수처리장 바이오가스를 이용한 발전시 가스엔진의 고장원인 분석)

  • Kim, Gill Jung;Kim, Lae Hyun
    • Journal of Energy Engineering
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    • v.25 no.4
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    • pp.13-29
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    • 2016
  • In this study, we analyzed the causes of major faults in the biogas plant through the case of gas engine failure when cogenerating electricity and heat using biogas as a fuel in the actual sewage treatment plant and suggested countermeasures. Hydrogen sulfide in the biogas entering the biogas engine and water caused by intermittent malfunction of the water removal system caused intercooler corrosion in the biogas engine. In addition, the siloxane in the biogas forms a silicate compound with silicon dioxide, which causes scratches and wear of the piston surface and the inner wall of the cylinder liner. The substances attached to the combustion chamber and the exhaust system were analyzed to be combined with hydrogen sulfide and other impurities. It is believed that hydrogen sulfide was supplied to the desulfurization plant for a long period of time because of the high content of hydrogen sulfide (more than 50ppm) in the biogas and the hydrogen sulfide was introduced into the engine due to the decrease of the removal efficiency due to the breakthrough point of the activated carbon in the desulfurization plant. In addition, the hydrogen sulfide degrades the function of the activated carbon for siloxane removal of the adsorption column, which is considered to be caused by the introduction of unremoved siloxane waste into the engine, resulting in various types of engine failure. Therefore, hydrogen sulfide, siloxane, and water can be regarded as the main causes of the failure of the biogas engine. Among them, hydrogen sulfide reacts with other materials causing failure and can be regarded as a substance having a great influence on the pretreatment process. As a result, optimization of $H_2S$ removal method seems to be an essential measure for stable operation of the biogas engine.

A Study on the Quality Characteristic of Power Bio-Fuel Oil for Alternative Fuel oil (중유 대체연료로서 발전용 바이오중유의 품질특성 연구)

  • Jang, Eun-Jung;Park, Jo-Yong;Min, Kyung-Il;Yim, Eui-Soon;Ha, Jong-Han;Lee, Bong-Hee
    • Journal of the Korean Applied Science and Technology
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    • v.31 no.4
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    • pp.562-571
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    • 2014
  • In these days, many countries carry out many renewable energy policies to increase the renewable energy portion and to reduce the GHG(Green House Gas). In Korea, RPS(Renewable Portfolio Standards) focused on over 500MW power producers is conducting. And they are using the bio-fuel oil to meet their RPS quota. The oil is a mixture of animal and vegetable fat or fatty acid ester of them and should satisfy some specifications to use the power generation such as viscosity, pour point, acid number. Depends on the raw materials, quality characteristics of power bio-fuel oil are changed. By adding the power bio-fuel oil, pour point, density, sulfur content and viscosity are decreased and acid number, iodine number, oxygen content are increased. In this study, we test the quality characteristic of power bio-fuel oil and the property changes by the blending ratio of power bio-fuel oil & conventional fuel oil.

A Study of Economic Efficiency and Environmental Performance Due to the Conversion of the 7th and 8th Basic Plan for Long-term Power Supply and Demand (제7차 및 제8차 전력수급기본계획 전원 구성 전환에 따른 경제성 및 환경성 변화 분석 연구)

  • Cho, Sungjin;Yoon, Teayeon;Kim, Yoon Kyung
    • Environmental and Resource Economics Review
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    • v.28 no.2
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    • pp.201-229
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    • 2019
  • This paper estimates the effects of generation mix changes in the $7^{th}$ and $8^{th}$ Basic Plan for Long-term Power Supply and Demand from two aspects: economic efficiency through electricity prices and environmental performance through $CO_2$ and air pollutants(NOx, SOx, PM) emissions. Particularly, we examined additional generation mix conversion paths that take into account the trade-off between economic efficiency and environmental performance through scenario analysis. According to our results, the conversion from the $7^{th}$ plan to the $8^{th}$ plan should increase the electricity prices in the mid- and long-term, while reducing GHG and air pollutants emissions at the same time. The alternative generation mix that combines $7^{th}$ and $8^{th}$ plans shows that there exists a path to mitigate the trade-off between economic and environmental in the long-term. It will be next to impossible to derive a optimal generation mix that simultaneously considers the core values, such as supply stability, environmental performance, economic efficiency, energy safety and energy security, when establishing the power supply and demand plan. However, by exploring the effects of various generation mix paths and suggesting near-optimal paths, people can best choose their direction after weighhing all the paths when deciding on a forward-looking generation mix in the long term.

A Study on the Supply Methods of Heating Energy in Rural Regions by Using Wood Chips -Focusing on the Production Method of Wood Chips for Fuel though Natural Drying Method- (목재칩을 이용한 농촌지역 난방에너지 공급 방법 연구 -자연건조 방식을 통한 연료용 목재칩 생산방법을 중심으로-)

  • An, Byeong-IL;Ko, Kyoung-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.22 no.2
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    • pp.401-408
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    • 2021
  • Supplies of wood chips for fuel tend to increase owing to energy decentralization and new renewable energy policies. This study suggests a technical method that is necessary in order to supply heating energy to rural regions by using wood chips for fuel. Therefore, this study investigates the effects of natural drying methods for eight months by installing a drying facility with natural ventilation capable of loading 10 tons of wood chips, and which derive a natural drying method based on this to meet the quality standards of wood chips for fuel. The study results confirm that it is possible to produce wood chips for high-quality fuel with water content at 20% or less after around 90 days of drying, provided that a drying facility with natural ventilation is equipped with materials that can be procured easily in rural regions. It is also possible to block the proliferation and fermentation of molds that affect the quality of wood chips, provided that intake and exhaust systems adhering to standards are equipped.

A Technical Assessment of Possibility Sanction for Assistance to DPRK (대북 바이오가스플랜트 지원의 제재 가능성에 대한 기술적 평가)

  • Chung, Yongjin;Kwon, Yongchai
    • Journal of Energy Engineering
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    • v.24 no.4
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    • pp.192-199
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    • 2015
  • Under the economic banner of "self-reliance," North Korea has focused on hydro and thermal power as its main energy supply sources. However, in the face of extreme energy penury caused by machinery and material supply instability in the wake of the collapse of the former communist block as well as equipment aging and deterioration due to floods and other disasters, North Korea and international aid organizations are increasingly turning their attention toward energy source diversification. In particular, renewable energy is recognized as the best strategic energy source for North Korea and it is a decentralized energy option that is suitable in light of North Korea's power distribution networks and its pursuit of self-reliance. Biogas can contribute to improving the human rights situation of North Koreans in conjunction with an increase in food production. For this reason, renewable energy is the most promising option for an energy source that is likely to secure humanitarian aid from international organizations such as the Food and Agricultural Organization (FAO) and the World Food Programme (WFP). However, the implementation of such humanitarian aid has been hampered by rising concerns about the diversion of provided energy materials for military purposes and the disguised introduction of dual use items strategic materials as well as UN Security Council resolutions and sanctions of the international community against North Korea's military provocation, including nuclear tests and missile launches. This paper explores the possibility of solving this dilemma and proceeding with the humanitarian aid to North Korea by evaluating the potential for sanction and the risk of diversion of the possible products for biogas-related aid on the basis of the list of UN-sanctioned items.

Biogas upgrading and Producing the Liquefied Bio-methane by Cryogenic Liquefaction Process (바이오가스 고질화와 초저온액화공정을 통한 액화바이오메탄 생산)

  • Shim, Dongmin;Sung, Hyunje;Park, Seongbum;Kim, Nackjoo;Chang, Homyung;Lee, Jaeyoung;Lee, Youngmin;Lee, Woocheul;Oh, Hwasoo
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.06a
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    • pp.246.1-246.1
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    • 2010
  • 본 연구는 바이오가스의 에너지효율성을 높이기 위한 연구로서 바이오가스 정제공정과 초저온액화공정을 통하여 액화바이오메탄을 생산하는 바이오가스 고질화기술개발 연구이다. 바이오가스 정제공정은 탈황, 제습, 흡착, 압축, $CO_2/CH_4$ 분리공정으로 구성하고, 초저온액화공정은 열교환기, $CO_2$ 제거설비, 질소냉매 공급공정으로 구성하여 혐기성소화조에서 발생하는 바이오가스($CH_4$ 농도: 60~65%, $H_2S$: 1,500~2,500ppm)를 $200Nm^3/hr$의 유량으로 인입시켜 액화바이오메탄을 생산하였다. 연구결과, 탈황공정에서는 가성소다 세정법을 이용하여 1,500~2,500ppm으로 인입되는 $H_2S$를 100ppm 이하로 제거한 후, 흡착법을 이용하여 $H_2S$를 완전히 제거하였다. 바이오가스에 포화된 수분은 냉각제습과 흡착제습공정을 통해 Dew point $-70{\sim}-90^{\circ}C$까지 제거하여 안정적으로 $CO_2/CH_4$ 분리공정에 인입시켰다. $CO_2/CH_4$ 분리공정은 흡착방식을 적용하여 $CH_4$ 순도가 95% 이상인 바이오메탄을 생산하였으며, 이때 메탄 회수율은 약 87%이였다. $CO_2$가 분리된 바이오메탄은 초저온액화공정을 이용하여 액화바이오메탄으로 전환시켰다. 이때 초저온액화공정은 Reverse Brayton cycle로 구성하였으며, 냉매로는 질소를 사용하였다. 액화바이오메탄의 생산은 바이오메탄을 등엔트로피과정인 단열팽창을 통하여 $-155{\sim}-159^{\circ}C$의 초저온으로 냉각되는 질소냉매와 열교환기에서 열교환시켜 이루어졌으며 그 생산량은 $3.46m^3$/day(1bar, $-161^{\circ}C$)이었다.

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Characteristic Analysis of Hybrid Desiccant Cooling System for District Heating in Residential Environment (지역난방에 연계된 하이브리드 제습냉방시스템의 주거환경에서의 성능 분석)

  • Ahn, Joon;Kim, Jaeyool;Kang, Byung Ha
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.38 no.7
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    • pp.571-579
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    • 2014
  • A series of field tests on hybrid desiccant cooling systems were conducted in July-August, 2013. The temperature and humidity of the supply and return air, power, and heat consumption were monitored and transferred in real time through the Internet. The performance parameters of the cooling system, namely, cooling capacity and COP (coefficient of performance), were evaluated from the measured data and their variations under outdoor conditions was analyzed. It was found that with increase in the outdoor temperature, the total energy decreases and cooling capacity increases whereas the latter decreases with increase in the outdoor humidity. The COP was also found to increase with the increase in outdoor temperature.