• Title/Summary/Keyword: 연료 효율

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한국의 과학기술 어디까지 왔나 - 연료전지 자동차 개발기술

  • Yu, Yeong-Il
    • The Science & Technology
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    • v.33 no.2 s.369
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    • pp.22-23
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    • 2000
  • 연료전지는 수소와 산소의 전기화학적인 반응에 의해 전기를 발생시키는 장치로 열효율이 매우 높으며 배기가스는 대부분 수증기이기 때문에 청정에너지원으로 인정되고 있다. 연료전지를 자동차용 동력원으로 사용하기 위한 기술은 80년대 말부터 개발되기 시작했는데 현재 개발된 차량을 시험운행하면서 기술적, 경제적인 검토를 진행하고 있는 단계이다. 국내의 기술개발 실정은 현재 4kw성능의 시스템이 개발되어 있으며 2000년엔 10kw급, 2002년엔 25kw급 연료전지를 탑재한 하이브리드 승용 시험차 개발사업을 추진하고 있다.

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연료전지발전

  • 이창우
    • 전기의세계
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    • v.41 no.6
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    • pp.7-11
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    • 1992
  • 연료전지는 연료가 가진 화학에너지를 전기화학반응에 의해 직접 전기에너지로 변환시키는 발전방식으로 에너지 변환효율이 높고 환경공해가 적어 도시부근이나 도심지 건물내 설치할 수 있으므로 전력계통운용이 용이하여 장래 화력발전 대체용이나 열병합발전용으로 유효하게 사용될 수 있는 등의 장점이 많아 국내의 개발이 활발이 진행되고 있다. 연료전지는 반응물질을 전지내에 저장헤 두는 1차전지(건전지등)나 2차전지(축전지)와는 달리 반응물질이 외부로부터 공급되는한 발전할 수 있으며 단위전지의 내부구조는 일반전지와 유사하나 에너지저장능력이 없는 발전장치이다.

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Research and Development for Stirling Engine(1) -Structure and Working Principle- (스터얼링기관의 연구, 개발 동향 (1) -구조 및 작동원리-)

  • 김태한
    • Journal of Biosystems Engineering
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    • v.20 no.2
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    • pp.185-193
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    • 1995
  • 자동차용기관, 운송용기관, 농업용기관, 박용기관, 항공용기관 등 현재 사용하고 있는 모든 기관의 연료는 대부분 석유에 의존하고 있으나 이 연료의 가채년수는 향후30년 정도로 추정하고 있으므로 석유자원의 유한성에 대비하기 위해서는 대체에너지 기관 개발이 절실히 요구되고 있다, 대체에너지 기관으로서는 연료의 다양성, 고효율, 저소음, 저진동, 저공해 등의 특징이 요구되며, 또한 용도도 다양해야 한다. 이러한 기관으로 스터얼링기관, 수소연료기관 등이 개발되고 있다.(중략)

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The Study for Idle Fuel Consumption of a Hydrogen-Blended Natural Gas Engine (수소 혼합 천연가스 연료 엔진의 아이들 연비에 관한 연구)

  • Lee, Sun-Youp;Kim, Young-Min;Lee, Jang-Hee
    • Journal of Energy Engineering
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    • v.19 no.3
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    • pp.171-176
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    • 2010
  • Using a hydrogen blended compressed natural gas (HCNG) as a fuel for IC engines has a significant meaning in terms of achieving a reduction of automotive exhaust emissions as well as preparing for an upcoming hydrogen economy by constructing hydrogen infrastructure. In addition, a HCNG engine has higher thermal efficiency than a CNG engine, which is another advantage that makes HCNG fuel considered as a future alternative for natural gas. Therefore, in this study, idling operation of a 11 litre HCNG bus engine was investigated in terms of fuel consumption rate and emissions characteristics. The results show that fuel consumption rate was decreased more than 20% by use of HCNG and all the emissions were significantly reduced in idling condition.

Performance Characteristics with Various Fuel Composition and Temperature for an External Type Fuel Pump in LPLi System (LPLi 시스템에서 외장형 펌프의 연료조성 및 온도에 따른 성능특성 연구)

  • Nam, Deok-Woo;Yoon, Jun-Kyu;Lim, Jong-Han
    • Journal of Advanced Marine Engineering and Technology
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    • v.35 no.5
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    • pp.566-575
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    • 2011
  • Since LPG (Liquefied petroleum gas) fuel supply system has an advantage of low emission characteristics, many studies have been conducted. In spite of the advantage of LPG supply system, a higher vapor pressure and lower viscosity than diesel or gasoline fuel may cause unstable running of fuel pump by the deterioration in lubrication performance and chemical reaction with rubber parts than that of diesel and gasoline fuel. Therefore its physical properties can cause the deterioration of durability. In this research, we developed an external type LPG pump which has the advantage of the price competitiveness and the convenient maintenance for LPLi system. The experiments were carried out in order to assess characteristics of the external type fuel pump at different fuel composition and temperature. As a result, there aren't any differences between internal and external type pump performance. It is observed that the same level of efficiency was maintained for both pumps as flow rate was increased with higher fuel temperature and more contents of propane in the fuel. And the pressure difference in LPLi system is maintained at constant with the various fuel compositions and temperatures due to their own characteristics of fuel supply system.

A Study on Performance of Initial Blowoff Flow for a Fuel Pump with Various Temperature and Composition Condition in LPG Engine (자동차용 LPG 펌프의 온도 및 연료조성에 따른 초기토출성능에 관한 연구)

  • Park, Cheol-Woong;Kim, Chang-Up;Choi, Kyo-Nam
    • Journal of the Korean Institute of Gas
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    • v.12 no.2
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    • pp.12-17
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    • 2008
  • The In recent years, the need for more fuel-efficient and lower-emission vehicles has driven the technical development of alternative fuels such as LPG (Liquefied Petroleum Gas) which is able to meet the limits of better emission levels without many modifications to current engine design. LPG has a high vapor pressure and lower viscosity and surface tension than diesel and gasoline fuels. These different fuel characteristics make it difficult to directly apply the conventional gasoline or diesel fuel pump. In this study, experiments are performed to get initial performance and efficiency of the fuel pump under different condition of the temperature and composition of fuel. The characteristics of vane type fuel pump were investigated to access the applicability on LPLi engine.

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A Study on the Burner Structure for Efficient Improvement of Steam Reforming (수증기 개질 반응기의 효율 향상을 위한 버너 구조 연구)

  • Sung, Bong-Hyun;Han, Jae-Chan;Shin, Jang-Sik;Lee, Seung-Young;Yang, Hye-Kyong;Shin, Seok-Jae;Park, Jong-Won;Kim, Doo-Hoon
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.06a
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    • pp.20-23
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    • 2007
  • 가정용 연료전지 수소 공급용 연료변환 장치는 LNG, LPG를 이용하여 수소를 제조하는 수증기 개질과 제조된 합성가스의 정제공정으로 저온/고온 전이 반응 및 선택적 산화 반응을 포함하게 된다. 이중 전체 연료변환 장치 효율은 공정중의 유일한 흡열 반응인 수증기 개질 반응기 구조와 반응열 공급용 버너에 의해 결정된다. 반응열 공급용 버너의 형식, 구조 등의 변수를 통해 본 연구진에 의해 개발된 반응구조의 최적 열원 공급 방식을 산출하고자 하였다. 이를 위하여 본 연구에서는 원통형 개질 반응기에 적용 가능한 버너의 구조, 토출 각도, 토출구의 수 등의 버너 설계 변수가 버너의 성능의 미치는 영향에 대하여 연구하였다. 연구에 사용된 버너는 적용 연료의 혼합 특성을 증가시키기 위해 혼합공간을 충분히 유지 하였으며, 버너의 구조와 연소용 기체의 토출각 및 토출구의 위치 변화를 통한 불꽃의 형태를 변화 시켜 반응기 내의 온도 분포 특성을 비교 분석하였으며, 분석 결과에 의해 원통형 개질 반응기에서 최대 효율을 가지는 버너의 구조로부터 수증기 개질 반응을 평가하였다.

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Improvement of Compression Ignition for Gasoline Fuel Injected in the Diesel Engine (디젤기관에 분사되는 가솔린연료의 압축착화성 향상)

  • Choi, Yoon-Jong;Lee, Joon-Seong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.1
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    • pp.26-31
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    • 2011
  • In this study, it made to run conventional single direct injection(DI) diesel engine, which adapted bulk combustion system not following spark ignition system without any ignition apparatus. It was heated and controlled inlet-air into conventional single DI diesel engine. The maximum value of brake thermal efficiency was at 35 region of air-fuel ratio. On the contrary, when the region of air-fuel ratio leaner than 35, brake thermal efficiency was decreased suddenly. And brake thermal efficiency was increased as much as inlet-air heating temperature increased. So, when air-fuel ratio was decreased and inlet-air heating temperature was higher, the engine was in optimal operation condition.

A Study on The Performance and Fuel Economy of Diesel Vehicles According to Change in Fuel Properties (연료물성에 따른 경유 차량의 성능 및 에너지소비효율 연구)

  • Noh, Kyeong-Ha;Lee, Min-Ho;Kim, Ki-Ho;Lee, Jung-Min
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.3
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    • pp.667-675
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    • 2018
  • Increasing emissions regulations and demand of high-efficiency cars that travels a lot of distance with less fuel, there is growing interest in Energy Consumption Efficiency. Korean energy consumption efficiency compute combined Fuel Economy by driven city & highway driving mode and present final Energy Consumption Efficiency as using 5-cycle correction formula. Energy consumption efficiency is computed Carbon-balance-method, when used burning fuel play a key role in vehicle performance & Energy Consumption Efficiency. In Korea, vehicle fuel is circulate by Petroleum and Petroleum Alternative Business Act, there is property difference in quality standard because petroleum sector's refine method or type of crude oil. It does not appear a big difference according to fuel, because it sets steady quality standard, it may affect the performance of automobile. Thus, in research We purchase a few diesel fuel which circulated in the market in summer season though directly-managed-gas station by petroleum sector, resolve property each of fuel, we compute Fuel Economy each of them. We analyze into change depend on applying for property as nowadays utilizing Energy Consumption Efficiency calculating formula of gasoline and diesel fuel. As result, Density each of sample fuel has a maximum difference roughly 0.9%, net heat value each of sample fuel has difference 1.6%, result of current Energy Consumption Efficiency each of sample fuel has a difference roughly 1% at city drive mode, 1.4% at highway drive mode. Result of use gasoline calculator formula shows less 6% result than nowadays utilizing Energy Consumption Efficiency calculating formula, each of sample's Energy Consumption Efficiency shows maximum roughly 1.4% result in city & highway drive mode.