• 제목/요약/키워드: Fuel cell thermal application

검색결과 47건 처리시간 0.022초

마이크로 전력계통에서 연료전지 발전시스템의 전기/열의 최적운영 기법 연구 (Optimal Electricity and Heat Production Strategies of Fuel Cell Device in a Micro-grid Energy System)

  • 이주원;박종배;김수덕;김창섭
    • 전기학회논문지
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    • 제58권6호
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    • pp.1093-1099
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    • 2009
  • Alternative energy sources such as renewable energy like solar power systems, wind power systems, or fuel cell power systems has been the rising issue in the electrical power system. This paper discusses an economic study analysis of fuel cells in the korean electricity market. It includes the basic concept of a fuel cell and the korean electricity market. It also describes the need of renewable energy and how the fuel cell is connected with the local grid. This paper shows the impact of production and recovering thermal energy of a grid-connected fuel cell power system. The profit maximization approach has been structured including electrical power trade with the local grid and heat trade within the micro-grid. The strategies are evaluated using a local load that uses electric and thermal power which has different patterns between summer and winter periods. The solution algorithm is not newly developed one, but is solved by an application called GAMS. Results indicate the need and usefulness of a fuel cell power system.

가정용 고분자연료전지 시스템의 운전 방법에 따른 성능 비교 (Operation Performance of a Polymer Electrolyte Fuel Cell Cogeneration System for Residential Application)

  • 이원용;정귀성;유상필;엄석기;김창수
    • 한국수소및신에너지학회논문집
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    • 제16권4호
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    • pp.364-371
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    • 2005
  • Fuel cell systems(FCS) have a financial and environmental advantage by providing electricity at a high efficiency and useful heat. For use in a residence, a polymer electrolyte fuel cell system(PEFCS) with a battery pack and a hot water storage tank has been modelled and simulated. The system is operated without connection to grid line. Its electric conversion efficiency and heat recovery performance are highly dependent on operation strategies and also on the seasonal thermal and electric load pattern. The output of the fuel cell is controlled stepwise as a function of the state of the battery and/or the storage water tank. In this study various operation strategies for cogeneration fuel cell systems are investigated. Average fuel saving rates at different seasons are calculated to find proper load management strategy. The scheme can be used to determine the optimal operating strategies of PEFCS for residential and building applications.

마이크로 연료 전지를 위한 유리 바이폴라 플레이트의 제작 방법 및 성능 평가 (Fabrication and Testing of Glass Bipolar Plates for Application on Micro PEM Fuel Cells)

  • 장보선;이종광;권세진
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2009년도 제33회 추계학술대회논문집
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    • pp.289-292
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    • 2009
  • 본 연구에서는 감광유리를 이용한 PEM 마이크로 연료전지 바이폴라 플레이트의 제작 공정을 확립하고 성능 측정을 수행하였다. 감광유리는 무게가 가볍고 내화학성이 뛰어나며 제작이 용이하다. 비등방성 식각, 열 및 UV 접합, 그리고 금속 층 적층을 통한 MEMS 제작 공정이 확립되었다. 성능 측정 결과 활성화 영역에 은이 적층된 마이크로 연료전지의 성능이 그렇지 않은 것보다 우수하였으며 두 경우에서 측정된 마이크로 연료전지의 성능은 모두 국내외 마이크로 연료전지 연구 수준과 동등한 수준이었다.

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고체산화물 연료전지와 양성자 전도성 세라믹 물질의 응용 (Solid oxide fuel cell and application of proton conducting ceramics)

  • 정동휘;김건태
    • 세라미스트
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    • 제21권4호
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    • pp.366-377
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    • 2018
  • Solid oxide fuel cells (SOFCs) are promising eco-friendly energy conversion system due to their high efficiency, low pollutant emission and fuel flexibility. High operating temperatures, however, leads to the crucial drawbacks such as incompatibility between the components and high thermal stress. Proton-conducting ceramic fuel cells (PCFCs) with proton-conducting oxide (PCO) materials are new types of fuel cells that can solve the problems of conventional SOFCs. Many studies have been proceeded to improve the performance of electrolytes and electrodes, and triple conductive oxides (TCOs) have attracted significant attention as high performance PCFC electrodes.

가정용 연료전지 운전 모드 해석을 위한 동특성 모델 개발 (A Dynamic Simulation Model for the Operating Strategy Study of 1 kW PEMFC)

  • 유상석;이영덕;홍동진;안국영
    • 한국수소및신에너지학회논문집
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    • 제19권4호
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    • pp.313-321
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    • 2008
  • Dynamics of the proton exchange membrane fuel cell is specially important when the system is frequently working on transient conditions. Even though the dynamics of proton exchange membrane fuel cell for residential power generation is less critical than that of PEMFC for transportation application, the system dynamics of PEMFC for RPG can be very important for daily start-up and stop. In particular, thermal management of the PEMFC for RPG is very important because the heat generation from electrochemical reaction is delivered to the home for hot water usages. Additionally, the thermal management is also very important for heat balance of the system and temperature control of the fuel cell. The objective of this study is to develop a dynamic system model for the study of PEMFC performance over various BOP options. Basic simulation results will be presented.

열전달 및 열하중을 고려한 자동차 연료전지(PEMFC) 분리판의 두께 최적설계 (Optimization of Automotive PEMFC Bipolar Plates considering Heat Transfer and Thermal Loads)

  • 김영성;김철
    • 한국자동차공학회논문집
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    • 제23권1호
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    • pp.34-40
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    • 2015
  • A stack in the proton exchange membrane fuel cell (PEMFC) consists of bipolar plates, a membrane electrode assembly, a gas diffusion layer, a collector and end plates. High current density is usually obtainable partially from uniform temperature distribution in the fuel cell. A size optimization method considering the thermal expansion effect of stacked plates was developed on the basis of finite element analyses. The thermal stresses in end, bipolar, and cooling plates were calculated based on temperature distribution obtained from thermal analyses. Finally, the optimization method was applied and optimum thicknesses of the three plates were calculated considering both fastening bolt tension and thermal expansion of each unit cell (72 cells, 5kW). The optimum design considering both thermal and mechanical loads increases the thickness of an end plate by 0.64-0.83% the case considering only mechanical load. The effect can be enlarged if the number of stack increases as in an automotive application to 200-300 stacks.

Application of SFCL on Bus Tie for Parallel Operation of Power Main Transformers in a Fuel Cell Power Systems

  • Chai, Hui-Seok;Kang, Byoung-Wook;Kim, Jin-Seok;Kim, Jae-Chul
    • Journal of Electrical Engineering and Technology
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    • 제10권6호
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    • pp.2256-2261
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    • 2015
  • In the power plant using high temperature fuel cells such as Molten Carbonate Fuel Cell(MCFC), and Solid Oxide Fuel Cell(SOFC), the generated electric power per area of power generation facilities is much higher than any other renewable energy sources. - High temperature fuel cell systems are capable of operating at MW rated power output. - It also has a feature that is short for length of the line for connecting the interior of the generation facilities. In normal condition, these points are advantages for voltage drops or power losses. However, in abnormal condition such as fault occurrence in electrical system, the fault currents are increased, because of the small impedance of the short length of power cable. Commonly, to minimize the thermal-mechanical stresses on the stack and increase the systems reliability, we divided the power plant configuration to several banks for parallel operation. However, when a fault occurs in the parallel operation system of power main transformer, the fault currents might exceed the interruption capacity of protective devices. In fact, although the internal voltage level of the fuel cell power plant is the voltage level of distribution systems, we should install the circuit breakers for transmission systems due to fault current. To resolve these problems, the SFCL has been studied as one of the noticeable devices. Therefore, we analyzed the effect of application of the SFCL on bus tie in a fuel cell power plants system using PSCAD/EMTDC.

연료전지 전해질 복합막 제조를 위한 폴리설폰계 지지체의 제조와 물성 (Preparation and Characterization of Polysulfone Substrate for Reinforced Composite Membrane Fuel Cell Membrane)

  • 남상용;김득주;황해영;김형준
    • 멤브레인
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    • 제19권1호
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    • pp.63-71
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    • 2009
  • 본 연구에서는 연료전지용 전해질 복합체용 지지체 막을 저가의 우수한 기계적 열적 안정성을 가지는 Polysulfone으로 상전이 법을 이용하여 제조하였다. 제조된 막을 이용하여 농도변화와 노출시간의 변화에 따른 열 수축율, 통기도, 모폴로지, 기계적 물성 및 다공도를 측정하였다. 모폴로지를 조절하기 위해 공기 중 노출 시간과 고분자 농도가 제어되었으며, 제조된 막은 고분자 농도 변화에 관계없이 모두 스폰지 구조를 나타내었다. 고분자의 농도가 증가함에 따라 기계적 열적 안정성은 증가하였지만, 다공도는 감소하는 결과를 보였다. 실험결과 20 wt%의 PSf 고분자 용액을 사용하여 2분의 노출시간을 두고 제조된 고분자 막에서 연료전지용 복합막으로 사용되기 위한 충분한 다공도(80%)와 기계적(tensile : 1.3 MPa), 열적(MD, TD shrinkgage < 1%) 안정성을 나타내었다.

연료전지 자동차용 수소센서의 히터 조건에 따른 열전달 특성에 관한 연구 (Study on Heat Transfer Characteristics by Heater Conditions of Hydrogen Sensor for Fuel Cell Electric Vehicle)

  • 서호철;박경석
    • 한국자동차공학회논문집
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    • 제21권1호
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    • pp.23-29
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    • 2013
  • In recent years, development of energy conversion systems using hydrogen as an energy source has been accelerated globally. Even though hydrogen is an environment-friendly energy source, safety and effectiveness issues in storage, transportation, and usage of hydrogen should be clearly resolved in every application. Therefore, sensors for detecting hydrogen leakage, especially for fuel cell electric vehicles, should be designed to have much higher resolution and accuracy in comparison with conventional gas sensors. In this study, we conducted to determine the design parameters for the semiconductor hydrogen sensor with optimized sensing conditions under the thermal distribution characteristic and thermal transfer characteristic. The heat generation study on power supply voltage was studied for correlation analysis of thermal energy according to the power supply voltage variation from 1.0 voltage to 10.0 voltage every 0.5 voltage. And we studied for the temperature coefficient of resistance with hydrogen sensor.

Highly Sulfonated Poly(Arylene Biphenylsulfone Ketone) Block Copolymers Prepared via Post-Sulfonation for Proton Conducting Electrolyte Membranes

  • Lee, Kyu Ha;Chu, Ji Young;Kim, Ae Rhan;Nahm, Kee Suk;Yoo, Dong Jin
    • Bulletin of the Korean Chemical Society
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    • 제34권6호
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    • pp.1763-1770
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    • 2013
  • A series of the block copolymers were successfully synthesized from post-sulfonated hydrophilic and hydrophobic macromers via three-step copolymerization. The degrees of sulfonation (DS) of the copolymers (10%, 30%, or 50%) were controlled by changing the molar ratio of the hydrophilic and hydrophobic parts. The resulting block copolymers were characterized by $^1H$ NMR and other technologies. The membranes were successfully cast using dimethyl sulfoxide (DMSO) solution at $100^{\circ}C$. The copolymers were characterized to confirm chemical structure by $^1H$ NMR and FT-IR. Thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) demonstrated that all sulfonated block copolymers exhibited good thermal stability with an initial weight loss at temperatures above $240^{\circ}C$. The membranes showed acceptable ion exchange capacity (IEC) and water uptake values in accordance with DS. The maximum proton conductivity was 184 mS $cm^{-1}$ in block copolymer-50 at $60^{\circ}C$ and 100% relative humidity, while the conductivity of Nifion-115 was 160 mS $cm^{-1}$ under the same measurement conditions. AFM images of the block copolymer membranes showed well separated the hydrophilic and hydrophobic domains. From the observed results it is that the prepared block membranes can be considered as suitable polymer electrolyte membranes for the application of polymer electrolyte membrane fuel cells (PEMFC).