• Title/Summary/Keyword: 수소연료 전지차량

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Numerical Analysis of Electromagnetic Radiation Characteristics by High Voltage and General Cables for Fuel Cell Electric Vehicle (FCEV) (수소 연료전지 차량용 고전압 케이블과 일반 케이블에 의한 차량 전자파 방사 특성 수치해석 연구)

  • Lee, Soon-Yong;Seo, Won-Bum;Lim, Ji-Seon;Choi, Jae-Hoon
    • Journal of Hydrogen and New Energy
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    • v.22 no.2
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    • pp.152-160
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    • 2011
  • The electromagnetic characteristics of FCEVs (fuel cell electric vehicles) are much different from the existing combustion engine cars as well as hybrid, plug-in-hybrid, and pure electric vehicles due to the high voltage/current generated by a fuel cell stack which uses a compressed hydrogen gas reacted with oxygen. To operate fuel cell stack efficiently, BOP (Balance of Plant) which is consisted of many motors in water pump, air blower, and hydrogen recycling pump as well as inverters for these motors is essential. Furthermore, there are also electric systems for entertainment, information, and vehicle control such as navigation, broadcasting, vehicle dynamic control systems, and so on. Since these systems are connected by high voltage or general cables, EMC (Electromagnetic compatibility) analysis for high voltage and general cable of FCEV is the most important element to prevent the possible electric functional safety errors. In this paper, electromagnetic fields by high voltage and general cables for FCEVs is studied. From numerical analysis results, total time harmonic electromagnetic field strength from high voltage and general cables have difference of 13~16 dB due to ground effect by impedance matching. The EMI results of FECV at 10 m distance shows difference of 41 dB at 30 MHz and 54 dB at 230 MHz compared with only general cable routing.

A Study about changing characteristics of the Polymer Membrane using electron beam (전자빔을 이용한 고분자 멤브래인 특성 변화에 관한 고찰)

  • Jeon, Gwang-Yeon;Chol, Hong-Jun;Yun, Young-Hoon;Cha, In-Su;Chol, Jong-Sik;Yoon, Jeong-Phil
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1520-1521
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    • 2007
  • 고분자 전해질 연료전지(PEMFC, polymer electrolyte membrane fuel cell)는 수소이온특성을 갖는 고분자막을 전해질로 사용하는 연료전지로서 무공해 차량의 동력원, 가정용 발전, 우주선용 전원, 군사용 전원 등 매우 다양한 부분에서 사용되어질 것으로 사료된다. 하지만 현재 높은 가격과 짧은 수명 등의 문제로 상용화에 이르지 못하고 있다. 고분자전해질 연료전지의 스택 가격을 부품별로 조사하여 보면 분리판이 전체 스택가격의 60% 정도가 가장 높은 비중을 차지하며 기체 확산층으로 사용되는 탄소재료가 12%,전해질이 10%, 촉매가 8% 정도를 차지한다. 촉매 또한 저가의 비귀금속 촉매를 개발하거나 백금 촉매의 성능을 향상시켜 촉매 사용량을 낮춤으로써 가격을 낮추기 위한 연구가 진행되어지고 있으며 전해질로 사용하는 고분자막도 가격이 매우 높은 Nafion 대신 저가 고분자를 개발하거나, 또는 가능한 얇은 전해질을 사용하기 위한 노력이 이루어지고 있다. 하지만 아직까지는 뚜렷한 진척성과가 없는 것으로 알려져 있다. 그래서 본 연구에서는 고분자 전해질 연료전지의 고분자 Membrane의 특성을 향상시키고 또한 박막의 배양성과 특성에 대해서 고찰해 보고자한다.

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A Comparative Study of Various Fuel for Newly Optimized Onboard Fuel Processor System under the Simple Heat Exchanger Network (연료전지차량용 연료개질기에 대한 최적연료비교연구)

  • Jung, Ikhwan;Park, Chansaem;Park, Seongho;Na, Jonggeol;Han, Chonghun
    • Korean Chemical Engineering Research
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    • v.52 no.6
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    • pp.720-726
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    • 2014
  • PEM fuel cell vehicles have been getting much attraction due to a sort of highly clean and effective transportation. The onboard fuel processor, however, is inevitably required to supply the hydrogen by conversion from some fuels since there are not enough available hydrogen stations nearby. A lot of studies have been focused on analyses of ATR reactor under the assumption of thermo-neutral condition and those of the optimized process for the minimization of energy consumption using thermal efficiency as an objective function, which doesn't guarantee the maximum hydrogen production. In this study, the analysis of optimization for 100 kW PEMFC onboard fuel processor was conducted targeting various fuels such as gasoline, LPG, diesel using newly defined hydrogen efficiency and keeping simply synthesized heat exchanger network regardless of external utilities leading to compactness and integration. Optimal result of gasoline case shows 9.43% reduction compared to previous study, which shows the newly defined objective function leads to better performance than thermal efficiency in terms of hydrogen production. The sensitivity analysis was also done for hydrogen efficiency, heat recovery of each heat exchanger, and the cost of each fuel. Finally, LPG was estimated as the most economical fuel in Korean market.

Rulemaking Process of Electrical Safety Regulation for Fuel Cell Vehicles (연료전지 차량의 전기 안전성 규제안 작성 방법론)

  • Kim, Eal-Goo;Xi, Chen;Park, Jae-Hong
    • Journal of Hydrogen and New Energy
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    • v.20 no.2
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    • pp.133-141
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    • 2009
  • 본 논문에서는 전기자동차의 고전압 시스템의 안전성을 확보하기 위한 법규 규제안 생성 방법론을 제시하였다. 법규가 기술적으로 모든 영역을 빠뜨리지 않고 정의하고 있는지를 파악하기 위한 방법으로 법규분포분석법(Regulation Distribution Analysis Method)과 법규 완전도 분석법(Regulation Completeness Analysis Method)을 제시하였다. 자동차 설계와 생산에 있어서 법규/규제는 중요한 이슈가 되고 있다. 원칙적으로 법규는 자동차 승객과 환경을 보호하는 목적으로 생성되고, 이윤 추구 중심의 시장에서 놓칠 수 있는 기술적 항목들을 규제할 수 있도록 한다. 매연 배출 정도, 매연 모니터링 시스템, 전기 안전성과 같은 항목이 그 예이며, 향후 연료전기자동차 양산을 앞두고는 고전압 안전성과 관련된 규제 또한 필요하게 될 것으로 파악된다. 그러나 규제 항목에서 미정의된 부분이 있는지를 확인하는 체계적인 방법이 없어 본 논문에서는 기술적인 파라미터를 중심으로 규제항목을 검토하는 방법론을 제시하였다.

The Study of Comparison of Cooling System for H2 Discharge Station (수소충전용 직접 및 간접 냉각시스템 비교 평가 연구)

  • LEE, HYENCHAN;YI, JONGYEOL;BAE, CHANHYO;HEO, JEONGHO;JEON, JAEYOUNG
    • Journal of Hydrogen and New Energy
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    • v.30 no.2
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    • pp.163-169
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    • 2019
  • This study is a research to compare efficiency of new cooling system (chiller, pre-cooler) to that of the conventional system at the hydrogen refueling station (HRS). This study includes contents for thermodynamic comparison of cooling system for HRS and comparison of pros and cons of its components. So It is to establish design concept of cooling system of HRS supplying with fuel cell electric vehicle (FCEV). HRS is charging high pressure H2 (700 bar) to FCEV. However cooling system is need to prevent temperature rise in tank. This cooling system consists of pre-cooler and chiller system.

Study on the Electric Insulation Characteristics in a Fuel Cell Vehicle (연료전지 차량의 전기적 절연 특성에 관한 연구)

  • Yu, Jung-Han;kim, Duck-Whan;Kim, Ju-Han;Jeong, Kwi-Seong;Kum, Young-Bum;Kim, Sae-Hoon;Ahn, Deuk-Kuen
    • Journal of Hydrogen and New Energy
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    • v.23 no.2
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    • pp.150-155
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    • 2012
  • Polymer Electrolyte Membrane Fuel Cell (PEMFC) stack power output is needed to be approximately 100 kW to meet the requirements of automotive applications. In order to secure the electric safety for drivers, passengers and mechanics, it is very important to understand phenomena of an electric insulation in a fuel cell vehicle. In this study, we studied the electric insulation properties and the insulation resistance of stack, system and vehicle in the field of fuel cell was estimated at the applied voltage of 500 V, respectively. Also we discussed the insulation factors such as the conductivity of coolant, the element of vehicle design and the intrinsic resistance of the vehicle components.

Applications of Renewable Energy for Railway System (국내외 철도 시스템의 신재생에너지 적용현황)

  • Park, Haneol;Kim, Duk-Hyun;Kim, Dae-Nyeon
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.11a
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    • pp.135.1-135.1
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    • 2011
  • 철도 선진국을 중심으로 신재생에너지의 철도 시스템 적용이 가속화 되고 있고, 국내에서도 철도 시스템에 신재생에너지를 적용하려는 시도가 이루어지고 있다. 이미 상당수의 신규 역사가 BIPV(building integrated photovoltaic) 시스템을 적용하고 있고, 단순히 유휴지를 이용한 풍력 발전 시스템을 넘어서 차량의 주행풍을 이용하거나 차량 외부에 풍력 발전기를 설치하는 등의 다양한 시도들이 이루어지고 있다. 수소 에너지를 연료로 하는 연로전지의 경우 기존 전기철도의 대체 연료로서 주목을 받으며 많은 연구가 이루어졌고 현재는 시험 운전 단계에 이르러 있다. 지열의 경우에는 벌써 오래전부터 승강장 또는 선로의 해빙장치의 에너지원으로 사용 되고 있다. 이밖에 수력 및 해양 에너지의 경우 전철전력의 청정 에너지 공급원으로 보고되고 있으며, 차량이나 역사 내에서 발생하는 운동 에너지를 수확하여 전기 에너지로 변환하는 에너지 하베스팅 기술이 새로운 신재생에너지 기술로서 많은 관심을 받고 있다. 에너지 문제와 온실가스 감축 의무 부담이 날로 가중되는 현 시점에서 신재생에너지의 전기철도 시스템 적용은 이 같은 문제를 해결할 수 있는 확실한 대안이 될 것이다. 본 논문에서는 국내외 전기철도 시스템의 신재생에너지 적용 기술과 적용 방안에 대해 고찰한다.

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Development of the Integrated Fuel Cell Monitoring System (통합 연료전지모니터링 시스템 개발)

  • KIM, HYUNJUN;YEOM, SANGCHUL;AHN, BYUNGKI;KIM, SAEHOON;KUM, YEONGBEOM
    • Journal of Hydrogen and New Energy
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    • v.26 no.3
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    • pp.241-246
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    • 2015
  • The interest of New Renewable Energy is increasing globally because of the increment of the uncertainty for the energy's supply and demand, and the increment of the frequency in weather anomaly and its damages. One of the New Renewable Energies, Hydrogen receives attention as the future energy that can deal with global environment regulation. Fuel Cell Electric Vehicle (FCEV) is an environment-friendly vehicle that uses Hydrogen as fuel. The electric power for FCEV is generated by chemical reaction with Oxygen from the air and Hydrogen. Hyundai Motor Company (HMC) has developed a proprietary fuel cell system since 2005. In 2012, HMC is the first car maker that mass-produces the ix35 FCEV to the worldwide such as North America, Europe, etc. In order to develop and improve the FCEV technology, data acquisition and analysis of the driving vehicle information is essential. Therefore, the monitoring system is developed, which is consist of datalogger, Automatic Vehicle Location (AVL) server and main server. Especially, WCDMA technology is integrated into the system which enables the data analysis without any restriction of time and region. The main function of the system is the analysis of the driving pattern and the component durability, and the safety monitoring. As a result, ix35 FCEV has successfully developed by using the developed monitoring system. The system is going to take an advantage of development in the future FCEV technology.

Scenario-based Design and Life Cycle Cost Analysis of Energy Supply System for Transportation Sector (도로운송부문용 에너지 공급 시스템 설계 및 경제성평가)

  • Han, Seulki;Kim, Jiyong
    • Korean Chemical Engineering Research
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    • v.53 no.2
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    • pp.164-173
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    • 2015
  • This study aims to design energy supply systems from various energy sources for transportation sectors and comparatively analyze the life cycle cost of different scenario-based systems. For components of the proposed energy supply system, we consider a typical oil refinery, byproduct hydrogen system, renewable energy source (RES)-based electric generation system and existing electricity grid. We also include three types of vehicles in transportation sector such as internal combustion engine vehicle (ICEV), electric vehicle (EV), fuel cell vehicle (FCV). We then develop various energy supply scenarios which consist of such components and evaluate the economic performance of different systems from the viewpoint of life cycle cost. Finally we illustrate the applicability of the proposed framework by conducting the design problem of energy supply systems of Jeju, Korea. As the results of life cycle cost analysis, EV fueled by electricity from grid is the most economically feasible. In addition, we identify key parameters to contribute the total life cycle cost such as fuel cost, vehicle cost, infra cost and maintenance cost using sensitivity analysis.

Development of the High Pressure Hydrogen Gas Cylinder(Type4) for Fuel Cell Vehicle;Design Qualification Tests (연료전지 차량용 고압기체수소 저장용기(Type4)개발;설계검증시험)

  • Yoo, Gye-Hyoung;Ju, Yong-Sun;Heo, Seok-Bong;Jeon, Sang-Jin;Kim, Jong-Lyul;Lee, Jong-Hee
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.11a
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    • pp.193-196
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    • 2007
  • We developed and tested the high pressure hydrogen gas cylinder(type4) for fuel cell vehicle. The working pressure is 350bar. We conducted material tests, production tests and design qualification tests on the developed cylinders according to modified NGV2-2000(hydrogen). The high pressure hydrogen gas cylinder met all the design qualification requirements of ANSI/CSA NGV2-2000 and acquired NGV2 certification from independent inspection agency.

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