• 제목/요약/키워드: Hydrogen system

검색결과 2,321건 처리시간 0.027초

수소버스 측면충돌 시험방법 연구 (Study on Side Impact Test Procedure of Hydrogen Bus)

  • 김경진;신재호;한경희;인정민;심소정;김시우
    • 자동차안전학회지
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    • 제13권4호
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    • pp.92-98
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    • 2021
  • Recently hydrogen fuel cell buses have been deployed for the public transportations. In order to introduce buses fueled by hydrogen successfully, the research results of hydrogen bus safety should be discussed and investigated significantly. Especially, Korean government drives research in terms of various applications of hydrogen energy to replace the conventional fuel energy resources and to improve the safety evaluation. Thus it is necessary to examine vehicle crashworthiness under side impact loadings. This study was focused on the simulation result evaluation of full bus model and simplified bus model with hydrogen fuel tank module and mounting system located below floor structure due to the significance of bus side impact accidents. The finite element models of hydrogen bus, fuel tank system and side impact moving barrier were set up and simulation results reported model performance and result comparison of two side impact models. Computational results and research discussion showed the conceptual side impact framework to evaluate hydrogen bus crashworthiness.

Type III 수소 저장 용기에서 난류 모델(Turbulence Model)에 따른 충전(Filling)현상의 수치 해석적 연구 (Numerical Analysis of Fillling Flow in Type III Hydrogen Tank with Different Turbulence Models)

  • 김무선;류준형;이성권;최성웅
    • 한국수소및신에너지학회논문집
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    • 제32권6호
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    • pp.483-488
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    • 2021
  • With continuous emission of environmental pollutants and an increase in greenhouse gases such as carbon dioxide, demand to seek other types of energy sources, alternative energy, was needed. Hydrogen, an eco-friendly energy, is attracting attention as the ultimate alternative energy medium. Hydrogen storage technology has been studied diversely to utilize hydrogen energy. In this study, the gas behavior of hydrogen in the storage tank was numerically examined under charge conditions for the Tpe III hydrogen tank. Numerical results were compared with the experimental results to verify the numerical implementation. In the results of pressure and temperature values under charge condition, the Realizable k-ε model and Reynold stress model were quantitatively matched with the smallest error between numerical and experimental results.

수소운송설비 안전성 강화 방안 고찰 (A Study on the Safety Enhancement of Hydrogen Tube Trailer)

  • 박우일;김영훈;이인우;강승규
    • 한국가스학회지
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    • 제26권6호
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    • pp.59-64
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    • 2022
  • 현재 수소운송설비는 2022년 10월 말 기준 787대가 운행 중이며, Type 1 이음매 없는 용기에 최대 200 bar의 압력으로 1회 최대 340 kg을 운송한다. 현재 안전관리체계 및 설비관리는 양호한 상태이나, 안전성 강화를 위해 제도 및 설비 구조개선이 필요한 실정이다. 이에 따라, 본 논문은 수소에너지 활성화 정책에 의해 수소운송설비 보급·운영의 확대 과정 중 지난 2021년 12월 28일 대전-당진간 고속도로에서 발생한 사고사례를 모사 및 해석을 진행하였으며, 사고 분석 및 해석 결과에 따라 수소운송설비의 안전성 향상 방안에 대해 제언하였다.

시뮬레이션 기반 PEM 수전해 시스템 고장 진단 모델 개발 (Development of a Fault Diagnosis Model for PEM Water Electrolysis System Based on Simulation)

  • 구태형;고락길;노현우;서영민;하동우;현대일;한재영
    • 한국수소및신에너지학회논문집
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    • 제34권5호
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    • pp.478-489
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    • 2023
  • In this study, fault diagnosis and detection methods developed to ensure the reliability of polymer electrolyte membrane (PEM) hydrogen electrolysis systems have been proposed. The proposed method consists of model development and data generation of the PEM hydrogen electrolysis system, and data-driven fault diagnosis learning model development. The developed fault diagnosis learning model describes how to detect and classify faults in the sensors and components of the system.

소형 수소추진선박 기술 개발 및 실증 (The Technology Development and Substantiation of Small Hydrogen Powered Vessel)

  • 임재완;이세준;윤상진;임옥택
    • 한국수소및신에너지학회논문집
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    • 제34권6호
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    • pp.555-561
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    • 2023
  • In this study, we proposed a standard model for the design, construction and demonstration of the technology development and substantiation of small hydrogen powered vessel in order to respond to the alternative fuel-using vessel market that requires the use of low-carbon/carbon-free fuel as a greenhouse gas reduction measure. The hydrogen fuel cell-based electric propulsion system developed through this is optimized through performance and durability tests on the land-based test site (LBTS), and the electric propulsion system applied to this result is mounted on a small hydrogen propulsion vessel and operated. Simultaneously, through the digital twin technology between the LBTS and the hydrogen-propelled vessel on the sea, the technology that can predict and diagnose the problems that can occur in the electric propulsion system of the vessel is applied to carry out the empirical study of the hydrogen-propelled vessel. In addition, we propose a commercialization model by analyzing the economic feasibility of the demonstration vessel.

연료전지 하이브리드 자동차의 고효율 수소 재순환 시스템의 개발 (Development of the Hydrogen Recirculation System for Fuel Cell Hybrid Vehicle)

  • 김민진;손영준;김경연;이원용
    • 한국수소및신에너지학회논문집
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    • 제19권2호
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    • pp.118-123
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    • 2008
  • For the hydrogen recirculation system of the PEMFC (polymer electrolyte membrane fuel cell), the ejector is useful to improve the efficiency of the fuel cell system. However, conventional ejector does not keep its entrainment ratio good when the various power duties is required by the fuel cell system. In this study, the variable multi-ejector acceptable in the whole duty range required from the fuel cell hybrid mini-bus is developed. Consequently, the performance of the developed ejector is verified by the experiments based on the real operating conditions.

연료전지자동차의 고압수소저장시스템 신뢰성 평가 (The Evaluation of Reliability for the High Pressure Hydrogen Storage System of Fuel Cell Vehicle)

  • 장규진;최영민;안병기;임태원
    • 한국수소및신에너지학회논문집
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    • 제19권4호
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    • pp.266-275
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    • 2008
  • The performance improvement of each part for durability, safety and cost of high pressure storage system for fuel cell vehicle has been focused so far. However, for the mass production of fuel cell vehicle, it is necessary to evaluate durability and safety in system module and vehicle level. The test procedure to evaluate vibration and collision safety of high pressure hydrogen storage system for the fuel cell vehicle is established and its reliability is verified.

EMTDC를 이용한 수소제조용 태양광 발전 시스템의 모델 (EMTDC model Development of Solar Powered Hydrogen Production System)

  • 이동한;박민원;유인근
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2005년도 제36회 하계학술대회 논문집 B
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    • pp.1669-1671
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    • 2005
  • This paper presents an effective modeling scheme of SPE cell system for hydrogen production. PSCAD/EMTDC model of SPE cell system for hydrogen production to efficiently utilize Solar cell energy which produces effectively hydrogen energy is showed in this paper. The simulated results are then verified by comparing them with the actual values obtained from the data acquisition system. Authors are sure that it is a useful method to the researchers who study SPE cell system for hydrogen production.

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액체로켓엔진 산화제로서의 과산화수소 공급계 구축에 관한 연구 (A Study of Construction of a Hydrogen Peroxide Supply System for Liquid Rocket Engine)

  • 전준수;이양석;김영문;최유리;고영성;김유;김선진
    • 한국추진공학회지
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    • 제14권2호
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    • pp.63-70
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    • 2010
  • 본 연구에서는 액체로켓엔진 산화제로 과산화수소를 사용하기 위한 공급 설비 구축 및 세척 방법을 제시하고자 한다. 과산화수소를 추진제로 사용하기 위해서는 90% 이상의 고농도 과산화수소가 필요하며, 고농도 과산화수소의 공급 설비는 약간의 오염에도 민감하게 반응하는 과산화수소의 특성상 오염을 최소화해야 한다. 과산화수소 공급 설비의 오염을 최소화하기 위하여 공급 설비를 세척하고 세척된 공급 설비에 보호막을 입히는 표면안정화 절차를 확립하였다. 또한, 구축된 공급 설비는 누설 시험과 연소 시험 및 저장성 테스트를 통하여 안정성을 검증하였다.

고출력 SOEC 시스템의 매개변수 연구 (Parametric Study on High Power SOEC System)

  • 뚜안앵;김영상;잡반티엔;이동근;안국영
    • 한국수소및신에너지학회논문집
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    • 제32권6호
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    • pp.470-476
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    • 2021
  • In the near future, with the urgent requirement of environmental protection, hydrogen based energy system is essential. However, at the present time, most of the hydrogen is produced by reforming, which still produces carbon dioxide. This study proposes a high-power electrolytic hydrogen production system based on solid oxide electrolysis cell with no harmful emissions to the environment. Besides that, the parametric study and optimization are also carried to examine the effect of individual parameter and their combination on system efficiency. The result shows that the increase in steam conversion rate and hydrogen molar fraction in incoming stream reduces system efficiency because of the fuel heater power increase. Besides, the higher Faraday efficiency does not always result a higher system efficiency.