• Title/Summary/Keyword: 수소 안전

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격납용기내 소격실에서의 수소혼합 연구

  • 박군철;최용석;이운장
    • Proceedings of the Korean Nuclear Society Conference
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    • 1997.05a
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    • pp.617-622
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    • 1997
  • 격납건물내 소격실에서의 수소혼합 정도를 파악하고 격실내 균일한 혼합을 좌우하는 인자의 영향을 분석하기 위하여 소규모 혼합실험을 수행했다. 본 연구에서는 해석적으로 수립된 3차원 혼합 모델의 검증을 위하여 3차원 모사가 가능하도록 실험 장치를 구성하였다. 격납용기 내에서 수소 생성의 주원인이 되는 노심으로부터의 수소거동을 분석하기 위한 기초 실험(실험 A)과 안전주입 탱크 격실에서의 수소거동을 분석하기 위해 원형 혼합 chamber를 구상했다. 기초실험 A에서는 혼합 chamber내 축 방향으로 대칭적인 오리피스형 장애물을 설치하고 실험했고 안전주입 탱크 격실을 모사한 실험 B는 영광 3&4호기를 바탕으로 축소시켜 안전주입탱크 격실내 존재하는 두충과 안전 주입 탱크 사이의 틀을 통한 혼합체의 거동을 분석했다. 실험결과 오리피스형 장애물을 설치한 기초실험에서는 원형 띠모양의 장애물이 혼합체의 거동에 큰 영향을 주지 않는 것이 관측됐지만 안전주입탱크격실 실험에서는 격실내 장애물로 존재하는 두충이 혼합체의 거동에 큰 영향을 주는 것이 관측됐다.

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A Study on the Safety of Hydrogen Embrittlement of Materials Used for Hydrogen Electric Vehicles (수소전기차 사용소재의 수소취성 안전성에 관한 고찰)

  • HYEONJIN JEON;WONJONG JEONG;SUNGGOO CHO;HOSIK LEE;HYUNWOO LEE;SEONGWOO CHO;ILHO KANG;NAMYONG KIM;HO JIN RYU
    • Transactions of the Korean hydrogen and new energy society
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    • v.33 no.6
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    • pp.761-768
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    • 2022
  • In the hope of realizing carbon neutrality, Korea has established the goal of expanding the supply of hydrogen electric vehicles through a roadmap to revitalize the hydrogen economy. A prerequisite for successful supply expansion is securing the safety of hydrogen electric vehicles. Certain parts, such as the hydrogen transport pipe and tank, in hydrogen electric vehicles are exposed to high-pressure hydrogen gas over long periods of time, so the hydrogen enters the grain boundary of material, resulting in a degradation of the parts referred to as hydrogen embrittlement. In addition, since the safety of parts utilizing hydrogen varies depending on the type of material used and its environmental characteristics, the necessity for the enactment of a hydrogen embrittlement regulation has emerged and is still being discussed as a Global Technical Regulation (GTR). In this paper, we analyze a hydrogen compatibility material evaluation method discussed in GTR and present a direction for the development of Korean-type hydrogen compatibility material evaluation methods.

Effect Analysis of the Pre-Consulting System of Hydrogen Refueling Station for Expanding the Hydrogen Mobility Infrastructure (수소모빌리티 인프라 확대를 위한 수소충전소 사전컨설팅 제도 효과 분석)

  • Lee, Man-Wook;Kim, Sung-Kyu;Tak, Song-Su;Kim, Dae-Tae
    • Journal of the Korean Institute of Gas
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    • v.25 no.6
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    • pp.85-91
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    • 2021
  • In January 2019, the Korean government announced the 「Hydrogen Economy Activation Roadmap」 to be a world-class leading country in Hydrogen economy. Korea has established a strategy that can lead the hydrogen economy with its strong points of 'hydrogen car' and 'fuel cell'. As a part of that, a target of supplying hydrogen vehicle charging stations to 310 by 2022 and 1,200 by 2040 was established. In line with this, Korea Gas Safety Corporation will operate a pre-consulting system of hydrogen vehicle charging station in February 2021 to solve in advance construction delays due to various on-site problems according to safety standards during the construction stage to build a hydrogen refueling station with a sense of speed. This paper is to find out about the pre-consulting system and to analyze its effects.

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

  • Woo-Il, Park;Yeong-Hun, Kim;In-Woo, Lee;Seung-Kyu, Kang
    • Journal of the Korean Institute of Gas
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    • v.26 no.6
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    • pp.59-64
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    • 2022
  • Currently, 787 hydrogen tube trailer are in operation as of the end of October 2022, and a maximum of 340 kg is transported in a Type 1 seamless container at a pressure of up to 200 bar. The current safety management system and facility management are in good condition, but the system and facility structure improvement are needed to strengthen safety. Accordingly, this paper simulated and analyzed an accident case that occurred on the Daejeon-Dangjin highway on December 28, 2021 during the process of expanding the supply and operation of hydrogen tube trailer according to the hydrogen energy activation policy. Based on the results, suggestions were made on how to improve the safety of hydrogen tube trailer.

An Analysis of Safety Management Items for Low Pressure Hydrogen Facility below 0.1MPa in Domestic Hydrogen Town (국내 수소타운 내 0.1MPa 이하 저압 수소 사용시설의 안전관리 항목 분석)

  • Lee, Duk-Gwon;Heo, Doo-Hyun;Lee, Sun-Kyu;Lee, Jung-Woon;Lyu, Geun-Jun;Lee, Yeon-Jae;Kim, Hie-Sik
    • Journal of the Korean Institute of Gas
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    • v.19 no.6
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    • pp.85-91
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    • 2015
  • As the interest in hydrogen energy is being increased, it is a widely issue to develop a lot of hydrogen technologies in the field of production, storage, transportation, application and others. In the aftermath, there is a hydrogen town in Ul San, which is expected to expand application fields of hydrogen energy, as a demonstration project. The hydrogen town in Ul San can consist of high and low pressure part by the gas pressure. The high pressure part is managed by 'the high pressure gas safety control act'. And, low pressure part is managed by 'the guideline for the safety management of demonstration project of hydrogen town'. In this paper, to improve efficiency of safety management, the direction of safety management is reviewed by an analysis of low pressure hydrogen facility and safety management items. And then, some improvement directions are suggested. In the end, it is expected that the results of this study could help to activate construction of hydrogen town and improve efficiency of safety management as well.

Development of Standards for the Use of Liquefied Hydrogen for Ship Using Risk Assessment Techniques (위험성 평가기법을 활용한 선박용 액화수소 사용시설 기준개발)

  • Young-taeg, Hur;Hye-Soo, Han;Gyoung-min, Noh;Hee-soo, Chung;Chung-keun, Chae
    • Journal of the Korean Institute of Gas
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    • v.26 no.6
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    • pp.52-58
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    • 2022
  • According to the government's roadmap for revitalizing the hydrogen economy, various industries carry out projects using liquefied hydrogen as an energy source. However, safety standards necessary for operational demonstration projects are not prepared in Korea, thus, it is necessary to prepare safety standards as soon as possible. Therefore, in order to secure the safety of liquefied hydrogen instrumentation and handling facilities, it is necessary to prepare safety standards that comprehensively consider the risk of liquefied hydrogen. This study aims to prioritize safety standard items using ETA, FMEA, and AHP, which are risk assessment techniques, to present the feasibility of selecting safety standard items.

Hydraulic Compressor Safety Test for Hydrogen Stations (수소충전소용 유압식 압축기 안전성 시험에 관한 연구)

  • Seong, Hye-Jin;Hwang, Bom-Chan;Choi, Sung-Joon;Kim, Young-Kyu;Cho, Sung-Min
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.19 no.11
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    • pp.8-15
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    • 2020
  • The government has announced its Hydrogen Economy Roadmap to strengthen global competitiveness on the hydrogen economy by focusing on hydrogen fuel cell electric vehicles and fuel cells. In this regard, the interest on the economics and safety of the infrastructure of hydrogen stations has also increased. In this study, a test bed similar to an actual hydrogen charging facility was built, and a prototype of a piston-type compressor was modeled. In this model, the piston was hydraulically compressed to progressively test leakage, leakage rate, and durability and to check for any malfunction. Moreover, the leakage rate, cylinder leak performance, and compressor operation durability were evaluated for safety; it was confirmed that there were no abnormalities. Nevertheless, an investigation of the long-term use and operating pressure of the compressor is necessary to verify the safety of developing a100-MPa domestic compressor in the future.

A Hydrogen Sensor Experiment on the Ventilation Performance of a Cavity upon Hydrogen Leakage and Its CFD Simulation (수소 센서를 이용한 밀폐공간의 수소 누출 시 환기성능에 대한 실험 및 CFD 시뮬레이션)

  • Kim, Young-Doo;Shin, Dong-Hoon;Chung, Tae-Yong;Nam, Jin-Hyun;Kim, Young-Gyu
    • 한국신재생에너지학회:학술대회논문집
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    • 2007.11a
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    • pp.59-62
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    • 2007
  • 연료전지는 수소를 이용하여 전기를 생산하는 발전 시스템으로 운전 중 수소 누출과 폭발의 위험성을 항상 수반하고 있다. 따라서 안전성의 확보를 위해 연료전지 시스템 내부에서 수소 누출 시 유e동 특성으로 인한 특정 부근 농도 정체와 환기의 영향을 파악하는 것이 필요하다. 실험 장치와 전산유체역학 프로그램을 사용하여 챔버 내 수소의 유통 특성과 환기구에 따른 환기의 영향을 확인하였다. 수소의 누출 속도와 양에 따라 유동장의 형태는 크게 변하였으며 환기구의 위치와 크기는 특정 부근의 농도정체와 챔버 내 전체적인 수소 농도에 영향을 미침으로서 안정성을 확보하는 중요한 인자임을 알 수 있었다. 예측 결과를 실제 실험 모델과 비교하여 그 타당성을 검토하였으며 차후 가정용 연료전지 모듈의 환기구 설계에 적용할 수 있다.

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Risk Assessment for the Integrated System of Hydrogen Generation System Linked to Fuel Cell (연료전지 연계 수소추출기 통합 시스템에 대한 위험성 평가)

  • DANBEE SHIN;SEONGCHUL HONG;KWANGWON RHIE;DOOHYOUN SEO;DONGMIN LEE;TAEHUN KIM
    • Transactions of the Korean hydrogen and new energy society
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    • v.34 no.6
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    • pp.728-733
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    • 2023
  • Efforts are continuing to change from fossil fuels used to hydrogen energy society. In order to become a hydrogen society, stable production and real-life applicability are important. As a result, hydrogen generation system linked to fuel cell are being developed. Through this, it is expected that production to power generation will be possible where desired by utilizing the existing urban gas piping network. Hydrogen generation system and hydrogen fuel cell have been subjected to risk assessment and have already been commercialized, but no risk assessment has been conducted on the integrated system linking them. Therefore, it is intended to secure its safety by conducting a risk analysis on the integrated system.

Calculation of Expected Life of Hydrogen Pressure Vessels by Fracture and Fatigue Mechanics assuming Semi-elliptical Cracks and Analysis of the Effect of Thickness and Radius (반타원형 균열을 가정한 파괴 및 피로역학에 의한 수소 압력용기의 예상 수명 계산과 두께와 내경이 미치는 영향 분석)

  • Kim, Jeong Hwan;Lee, Hwa Young;Lee, Min-Kyung;Lee, Jae-Hun;Lyu, Geunjun
    • Journal of the Korean Institute of Gas
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    • v.25 no.6
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    • pp.53-65
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    • 2021
  • While the hydrogen refueling station is rapidly expanded and installed, the safety inspection of the hydrogen pressure vessel in the station should be very important. Of these, according to ASME, hydrogen embrittlement tests must be performed for hydrogen vessel that store hydrogen above a certain pressure. The main test method for hydrogen embrittlement inspection is to carry out fracture tests and fatigue fracture tests in a high pressure hydrogen atmosphere, which allows the durability limit of the pressure vessel to be measured and the endurable limit to be determined in the hydrogen atmosphere. In detail, the critical crack depth can be calculated by the stress intensity factor(K), and the service life can be determined by da/dN (fatigue growth rate). API579-1/ ASME FFS-1 part 9 exemplifies the calculation method according to the mode of crack-like flaws, but for various shapes such as plates and cylinders, there are about 55 modes according to the shape and location of the crack. Due to the fairly complex formula, it is not easily accessible. In this study, we will show you how to calculate fracture mechanics numerically via Excel and VBA. In addition, this was applied to analyze the effects of the thickness and inner diameter of the pressure vessel on the service life.