• 제목/요약/키워드: Hydrogen Mitigation System

검색결과 16건 처리시간 0.02초

Performance evaluation of an improved pool scrubbing system for thermally-induced steam generator tube rupture accident in OPR1000

  • Juhyeong Lee;Byeonghee Lee;Sung Joong Kim
    • Nuclear Engineering and Technology
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    • 제56권4호
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    • pp.1513-1525
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    • 2024
  • An improved mitigation system for thermally-induced steam generator tube rupture accidents was introduced to prevent direct environmental release of fission products bypassing the containment in the OPR1000. This involves injecting bypassed steam into the containment, cooling, and decontaminating it using a water coolant tank. To evaluate its performance, a severe accident analysis was performed using the MELCOR 2.2 code for OPR1000. Simulation results show that the proposed system sufficiently prevented the release of radioactive nuclides (RNs) into the environment via containment injection. The pool scrubbing system effectively decontaminated the injected RN and consequently reduced the aerosol mass in the containment atmosphere. However, the decay heat of the collected RNs causes re-vaporization. To restrict the re-vaporization, an external water source was considered, where the decontamination performance was significantly improved, and the RNs were effectively isolated. However, due to the continuous evaporation of the feed water caused by decay heat, a substantial amount of steam is released into the containment. Despite the slight pressurization inside the containment by the injected and evaporated steam, the steam decreased the hydrogen mole fraction, thereby reducing the possibility of ignition.

합류식 하수도의 악취발생 실태 연구 (Investigation of odor Release from Combined Sewer)

  • 길경익;신건철;임지열
    • 한국방재학회 논문집
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    • 제10권6호
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    • pp.185-191
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    • 2010
  • 본 연구에서는 합류식 하수도에서 발생하는 악취에 대해 연구하였다. 도심 지역 합류식 하수도와 합류식 하수도 주요 악취 발생 시설로 나누어 연구를 진행 하였다. 각 각에 대해 특징을 갖는 지역을 선정하여 모니터링을 실시하였다. 도심 지역 합류식 하수도의 경우 황화합물에 대한 실시간 모니터링과 더불어 복합악취 분석을 하였다. 도심 지역의 합류식 하수도 악취는 이동 유동 인구의 변화와 정화조 유출수에 영향을 받았다. 합류식 하수도 주요 악취 발생 시설의 경우 정화조 유출수의 영향이 큰 것으로 나타났다. 합류식 하수도의 주요 악취 유발 물질은 황화수소와 메틸머캅탄 등의 황화합물로판명되었다. 합류식 하수도의 악취 저감을 위해서는 정화조 유출수에 대한 개선 및 황화합물 발생 억제를 위한 대책이 필요할 것이라 판단된다.

A Study on the Evaluation Technology of Welds Integrity in Nuclear Power Plants

  • Chang, Hyun-Young;Kim, Jong-Sung;Jin, Tae-Eun
    • Corrosion Science and Technology
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    • 제6권1호
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    • pp.29-32
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    • 2007
  • The final goal of this study is to develop the core technologies applicable to the design, operation and maintenance of welds in nuclear structures. This study includes predicting microstructure changes and residual stress for welded parts of nuclear power plant components. Furthermore, researches are performed on evaluating fatigue, corrosion, and hydrogen induced cracking and finally constructs systematically integrated evaluation system for structural integrity of nuclear welded structures. In this study, metallurgical and mechanical approaches have been effectively coordinated considering real welding phenomena in the fields of welds properties such as microstructure, composition and residual stress, and in the fields of damage evaluations such as fatigue, corrosion, fatigue crack propagation, and stress corrosion cracking. Evaluation techniques tried in this study can be much economical and effective in that it uses theoretical/semi-empirical but includes many additional parameters that can be introduced in real phenomena such as phase transformation, strength mismatch and residual stress. It is clear that residual stress makes great contribution to fatigue and stress corrosion cracking. Therefore the mitigation techniques have been approached by reducing the residual stress of selected parts resulting in successful conclusions.

Performance evaluation of Accident Tolerant Fuel under station blackout accident in PWR nuclear power plant by improved ISAA code

  • Zhang, Bin;Gao, Pengcheng;Xu, Tao;Gui, Miao;Shan, Jianqiang
    • Nuclear Engineering and Technology
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    • 제54권7호
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    • pp.2475-2490
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    • 2022
  • The Accident Tolerant Fuel (ATF) is a new concept of fuel, which can not only withstand the consequences of the accident for a longer time, but also maintain or improve the performance under operating conditions. ISAA is a self-developed severe accident analysis code, which uses modular structures to simulate the development processes of severe accidents in nuclear plants. The basic version of ISAA is developed based on UO2-Zr fuel. To study the potential safety gain of ATF cladding, an improved version of ISAA, referred to as ISAA-ATF, is introduced to analyze the station blackout accident of PWR using ATF cladding. The results show that ATF cladding enable the core to maintain a longer time compared to zirconium alloy cladding, thereby enhancing the accident mitigation capability. Meanwhile, the generation of hydrogen is significantly reduced and delayed, which proves that ATF can improve the safety characteristics of the nuclear reactor.

지진 시 수직형 수소 저장용기의 거동 특성 분석 및 안전성에 관한 해석적 연구 (An Analytical Study on the Seismic Behavior and Safety of Vertical Hydrogen Storage Vessels Under the Earthquakes)

  • 이상문;배영준;정우영
    • 한국구조물진단유지관리공학회 논문집
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    • 제27권6호
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    • pp.152-161
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    • 2023
  • 일반적으로 대용량의 수소를 저장하기 위해 사용되는 수직형 원통 용기는 강재로 제작되며, 사용 환경을 고려하여 제작된 받침 콘크리트 상부에 기초 슬래브에 선 설치된 앵커로 고정하는 방식이 사용된다. 이와 같은 방식은 지진과 같은 외력이 작용될 시 정착부에 응력이 집중될 수 있으며, 앵커 및 콘크리트 손상으로 인한 구조물의 전도 피해가 발생할 수 있다. 본 연구는 현장 조사를 통한 실제 운용중인 수직형 수소 저장용기를 특정하여 3차원 유한요소로 모델링하였고, 비 구조 요소의 내진 성능 검토에 사용되는 ICC - ES AC 156의 인공 지진 및 규모 5.0 이상의 국내 기록지진을 적용하여 거동 특성을 분석하였다. 실제 규모로 제작된 구조물을 대상으로 실험을 진행하는 것이 타당하지만 현실적 제약으로 수행하기에 어려움이 있어 해석적 접근 방식을 통하여 대상 구조물의 안전성을 검토하였다. 거동 특성의 경우 지진동에 의해 발생된 구조물의 응답 가속도는 검토되는 지진 하중 대비 평균적으로 10 배 이상 크게 증폭이 되는 것으로 나타났으며, 무게 중심이 위치되는 지점으로 전달될수록 감소되는 경향을 보였다. 취약 부위로 예상되는 하부 시스템(지지 기둥 및 앵커 정착부)의 경우 허용 응력을 만족하는 것으로 나타났지만, 정착을 위한 받침 콘크리트의 쪼갬 및 인장 강도는 허용 응력 대비 약 5 % 정도의 여유만이 있어 이에 대한 대처 방안이 요구된다. 본 논문에서 제시된 연구 결과를 바탕으로 향후 진동대 시험을 통하여 수행이 되는 수소저장 용기 제작에 필요한 설계 하중 및 조건 등의 기초자료로 활용될 수 있을 것으로 사료된다.

In vitro evaluation of nano zinc oxide (nZnO) on mitigation of gaseous emissions

  • Sarker, Niloy Chandra;Keomanivong, Faithe;Borhan, Md.;Rahman, Shafiqur;Swanson, Kendall
    • Journal of Animal Science and Technology
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    • 제60권11호
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    • pp.27.1-27.8
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    • 2018
  • Background: Enteric methane ($CH_4$) accounts for about 70% of total $CH_4$ emissions from the ruminant animals. Researchers are exploring ways to mitigate enteric $CH_4$ emissions from ruminants. Recently, nano zinc oxide (nZnO) has shown potential in reducing $CH_4$ and hydrogen sulfide ($H_2S$) production from the liquid manure under anaerobic storage conditions. Four different levels of nZnO and two types of feed were mixed with rumen fluid to investigate the efficacy of nZnO in mitigating gaseous production. Methods: All experiments with four replicates were conducted in batches in 250 mL glass bottles paired with the ANKOM$^{RF}$ wireless gas production monitoring system. Gas production was monitored continuously for 72 h at a constant temperature of $39{\pm}1^{\circ}C$ in a water bath. Headspace gas samples were collected using gas-tight syringes from the Tedlar bags connected to the glass bottles and analyzed for greenhouse gases ($CH_4$ and carbon dioxide-$CO_2$) and $H_2S$ concentrations. $CH_4$ and $CO_2$ gas concentrations were analyzed using an SRI-8610 Gas Chromatograph and $H_2S$ concentrations were measured using a Jerome 631X meter. At the same time, substrate (i.e. mixed rumen fluid+ NP treatment+ feed composite) samples were collected from the glass bottles at the beginning and at the end of an experiment for bacterial counts, and volatile fatty acids (VFAs) analysis. Results: Compared to the control treatment the $H_2S$ and GHGs concentration reduction after 72 h of the tested nZnO levels varied between 4.89 to 53.65%. Additionally, 0.47 to 22.21% microbial population reduction was observed from the applied nZnO treatments. Application of nZnO at a rate of $1000{\mu}g\;g^{-1}$ have exhibited the highest amount of concentration reductions for all three gases and microbial population. Conclusion: Results suggest that both 500 and $1000{\mu}g\;g^{-1}$ nZnO application levels have the potential to reduce GHG and $H_2S$ concentrations.