• Title/Summary/Keyword: hydrogen refueling

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고정식 수소충전소에서의 Dispenser Module 내 구역별 위험성 평가 (Risk Assessment of Stationary Hydrogen Refueling Station by Section in Dispenser Module)

  • 임상진;김민기;김수;이윤호
    • 해양환경안전학회지
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    • 제29권1호
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    • pp.76-85
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    • 2023
  • 신재생에너지로서 수소에 대한 수요가 증가하고 있으나 기존의 화석 연료와 달리 수소는 연료 공급을 위한 전용 충전소가 필요하며, 이러한 인프라 확보를 위해서 수소충전소의 위험성 평가가 선행되어야 한다. 따라서 본 연구에서는 정성적 위험성평가와 정량적 위험성 평가로 구분하여 수소충전소에 대한 위험성평가를 수행하였다. 정성적 평가는 Hazard and Operability Analysis(HAZOP) 기법을 사용하여 Dispenser Module을 두 개의 Node로 평가하였으며, Criticality Estimation Matrix에 따라 Filter의 막힘으로 인한 사고와 고압 사고의 위험도가 High Level로 평가되었다. 정량적 위험성 평가는 Hydrogen Korea Risk Assessment Module(Hy-KoRAM)을 사용하여 화재의 형상과 피해영향범위를 나타냈고, 개인적 위험도와 사회적 위험도에 대한 평가를 수행하였다. 개인적 위험도는 수소충전소로부터 약 100m 떨어진 공공시설 부근까지 추가적인 안전조치가 고려되는 As Low As Reasonably Practicable(ALARP) 구간의 위험도를 보였고, 사회적 위험도 역시 약 10명의 사망자가 발생할 사고빈도가 1E-04/year로 도출되며 ALARP 구간 내에 나타났다. 정성적·정량적 위험성 평가 결과, 공정 단계의 추가적인 안전 조치와 수소충전소 부근의 제한구역 설정을 통하여 안전성 향상 방안을 제시하였다.

수소 충전소용 유량제어밸브(FCV)의 구조 및 피로해석을 통한 내구 성능 평가 (Durability Assessment by Structural and Fatigue Analysis of Flow Control Valves (FCVs) for Hydrogen Refueling Stations)

  • 최인호;하태일;김한상
    • 한국수소및신에너지학회논문집
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    • 제33권3호
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    • pp.240-246
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    • 2022
  • This study was conducted to develop a domestic product for a flow control valve for a hydrogen refueling station, and a domestic prototype was manufactured and the durability performance evaluation was conducted through comparison with an imported products. The stress generated by the internal pressure was checked and safety was confirmed using a commercial structural analysis program, ABAQUS, in accordance with the withstand pressure test standards. In addition, after identifying the weak areas the fatigue life was predicted through a commercial software, fe-safe. This fatigue analysis showed that the hydrogen gas repeated test criteria were satisfied.

HyRAM+를 이용한 수소 누출 시뮬레이터 구현 (Inplementation of a Hydrogen Leakage Simulator with HyRAM+)

  • 황성호
    • 문화기술의 융합
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    • 제10권1호
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    • pp.551-557
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    • 2024
  • 수소는 청정, 무탄소, 고에너지등 다양한 특징을 가진 재생에너지원으로 국제적으로 '미래에너지'로 인정받고 있다. 수소에너지 산업의 급속한 발전과 더불어 수소 수요를 충족시키기 위하여 더 많은 수소 인프라가 필요한 실정이다. 그러나 수소 인프라 사고가 빈번한 발생함으로 인해, 수소산업 발전에 걸림돌이 되고 있다. 미국 Sandia National Laboratories에서 개발한 HyRAM+는 수소충전소를 포함한 다양한 저장 응용 분야에 대한 수소 안전 평가와 관련된 데이터와 방법을 통합하는 소프트웨어 툴킷이다. HyRAM+의 물리 모드는 수소충전소 컴포넌트에 따라 수소누출 결과를 모사하여 가스 플룸 분산, 제트 프레임 온도와 궤적 그리고 복사 열속 등을 그래프로 나타낸다. 본 논문에서는 강원도 삼척시에 있는 수소충전소를 대상으로하여 HyRAM+ 소프트웨어를 이용하여 수소 누출 데이터를 추출하였다. HyRAM+에서 추출한 데이터를 이용하여 수소 누출(Leakage) 발생 시뮬레이터를 개발하였다. 데이터베이스와 그라파나(Grafana)를 이용하여 시뮬레이터에서 발생한 데이터를 보여주는 대쉬보드(Dashboard)로 구현하였다.

수소 복합스테이션 실증기반 운영데이터 모니터링 분석 연구 (A Study on Analysis of Operation Data Monitoring Based on Demonstration of Hydrogen Refueling Station)

  • 김동환;박송현;구연진;김필종;허윤실
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.505-512
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    • 2019
  • According to the "hydrogen economy roadmap" announced recently by the government, fuel cell electric vehicle diffusion and hydrogen refueling station construction are actively being carried out to prepare for the hydrogen economy era. The station will be expanded by introducing various charging station models such as hydrogen complex charging station, package, and mobile. Accordingly, the study on the safety demonstration of the charging station and related regulations should be compromised. The purpose of this study is to collect monitoring data during charging according to the distinct four seasons in Korea, and to use it as safety demonstration data by analyzing the charging status, charging rate and charging time during charging.

대용량 멀티포트 동시 충전 기반 수소충전소 안전성 평가 연구 (Risk Assessment for High Capacity Multiport Hydrogen Refueling Station)

  • 조충희;강승규;김부승;이경식
    • 한국수소및신에너지학회논문집
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    • 제34권5호
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    • pp.505-513
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    • 2023
  • Hydrogen infrastructure is expanding. High-capacity hydrogen refueling stations offer advantages because they can refuel a variety of light and heavy-duty vehicles, and multi-port refueling technology is developing to reduce charging time for heavy-duty vehicles. In this study, we suggest directions to lower the risk by analyzing the risk factors for each process involved in the installation of a high-capacity multi-port hydrogen refueling station in Changwon city. We conducted both qualitative and quantitative risk assessments of the equipment to evaluate the station. A hazard and operability study was performed for qualitative risk assessment, and PHAST/SAFETI were used for quantitative risk assessment. Quantitative risk assessment was used to calculate the consequence analysis of the facility to ensure secure design prior to station development and to predict individual and societal risks in various scenarios. As a result, the station's risk level was determined to be as low as reasonably practicable.

국내 LPG 충전소 내 수소 융·복합충전소 구축 가능 부지 연구 (A Study on Site to Build Hydrogen Multi Energy Filling Station in Domestic LPG Station)

  • 박지원;허윤실;강승규
    • 한국수소및신에너지학회논문집
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    • 제28권6호
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    • pp.642-648
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    • 2017
  • The use of fossil is causing enviromental all over the world. So hydrogen energy is attracting attention as one of the alternative. The government announced that 30% of the air pollution is because of the Internal Combustion Engine Vehicle. In addition, they plans to reduce Internal Combustion Engine Vehicles by 2030 and increase (electric vehicles, EV) or (fuel cell vehicle, FCV). The FCV is evaluated as a next-generation green car because it has a long driving distance and short charging time. However, the hydrogen industry is not able to expand due to the lack of refueling infrastrucutre. This paper predicts the site of hydrogen refueling stations for the expansion of the hydrogen industry and proposes a method to supply hydrogen multi energy filling stations.

수소충전소용 프리쿨러를 위한 수소가스 냉각에 관한 연구 (Study on Cooling of Hydrogen Gas for the Pre-Cooler in the Hydrogen Refueling Station)

  • 이경한;구경모;유철휘;황갑진
    • 한국수소및신에너지학회논문집
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    • 제30권3호
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    • pp.237-242
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    • 2019
  • In the hydrogen refueling station (HRS), it is need the pre-cooling system (PCS) to limit the inside temperature ($85^{\circ}C$) of the onboard thank (700 bar) and to charge the hydrogen at short time (within 3 minutes) to fuel cell electric vehicle (FCEV). From those safety reasons, the temperature of hydrogen gas must be controled $-33^{\circ}C$ to $-40^{\circ}C$ in PCS. The cooling test of the gaseous ($N_2$, He, $H_2$) was carried out using heat exchanger (pre-cooler) by indirect cooling and direct cooling method. It was confirmed that the temperature of hydrogen gas had below $-40^{\circ}C$ at below $-75^{\circ}C$ of chiller temperature in direct cooling.

수소충전소의 연료 계량 방법에 따른 계량 오차가 발생하는 원인 고찰 (The Study to Find Causes for Measuring Differences of Hydrogen Fillings in Hydrogen Refueling Station)

  • 이택홍;강병우;이은웅;정진배;홍석진
    • 한국수소및신에너지학회논문집
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    • 제29권1호
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    • pp.32-40
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    • 2018
  • There has been an measuring errors between state of charge (SOC; kg) value and mass flow meter (MFM) value in dispenser for hydrogen refueling station. Finally, we observed average 15.5% weight difference between these two values and the MFM readings show a 15.5% higher readout of the SOC readings. Each car was charged with average 2.66 kg of hydrogen fuel during this period. In the initial charging of the day shows less measuring value than the final charging with the maximum 0.038 kg times number of filling. There is no effects of atmosphere temperature change for the hydrogen filled weight during one full year such as January's cold winters and August's hot summers.

수소 생산 공정 개선을 위한 엑서지 분석과 열 교환망 합성: 분산형 수소 충전소에 대한 실용적 적용 (Exergy Analysis and Heat Exchanger Network Synthesis for Improvement of a Hydrogen Production Process: Practical Application to On-Site Hydrogen Refueling Stations)

  • 윤승관;조형태;김명준;이재원;김정환
    • 한국수소및신에너지학회논문집
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    • 제33권5호
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    • pp.515-524
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    • 2022
  • In this study, the on-site hydrogen production process for refueling stations that were not energy-optimized was improved through exergy analysis and heat exchange network synthesis. Furthermore, the process was scaled up from 30 Nm3/h to 150 Nm3/h to improve hydrogen production capacity. Exergy analysis results show that exergy destruction in the SMR reactor and the heat exchanger accounts for 58.1 and 19.8%, respectively. Thus, the process is improved by modifying the heat exchange network to reduce the exergy loss in these units. As a result of the process simulation analysis, thermal and exergy efficiency is improved from 75.7 to 78.6% and 68.1 to 70.4%, respectively. In conclusion, it is expected to improve the process efficiency when installing on-site hydrogen refueling stations.