박사

CFD를 이용한 174K ME-GI LNG선의 카고컴프레서룸 내부의 CFD를 이용한 가스 누출 및 확산에 관한 정량적인 위험도 분석에 관한 연구 = A study on the quantitative risk analysis for gas leak & dispersion in cargo compressor room of the 174K ME-GI LNG vessel by CFD

이상원 2018년
논문상세정보
' CFD를 이용한 174K ME-GI LNG선의 카고컴프레서룸 내부의 CFD를 이용한 가스 누출 및 확산에 관한 정량적인 위험도 분석에 관한 연구 = A study on the quantitative risk analysis for gas leak & dispersion in cargo compressor room of the 174K ME-GI LNG vessel by CFD' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 가스 감지기
  • 가스누출
  • 산적액화가스운반선의 건조와 설비에 대한 국제규칙
  • 액화 천연 가스
  • 전산유체역학
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
561 0

0.0%

' CFD를 이용한 174K ME-GI LNG선의 카고컴프레서룸 내부의 CFD를 이용한 가스 누출 및 확산에 관한 정량적인 위험도 분석에 관한 연구 = A study on the quantitative risk analysis for gas leak & dispersion in cargo compressor room of the 174K ME-GI LNG vessel by CFD' 의 참고문헌

  • Zhang, Bo and Chen, Guoming., 2010. Quantitative risk analysis of toxic gas release caused poisoning—A CFD and dose–response model combined approach, Journal of Process Safety and Environmental Protection, 88, pp253-262.
  • Yoo S.J., Kang J.W. & Yang J.H., 2013. A Study on Evaluation of Ventilation Efficiency from Ventilation System and Volume in the Small Facilities Using CFD, Journal of the Architectural Institute of Korea, 29(6), pp.263-270.
  • Yi.J.S., Jeong I.K., Yun J.H. & Suh J.S., 2011. A Study on Flow Characteristic in Muffler for 125cc, Grade Motorcycle, Journal of the Korean Society of Manufacturing Technology Engineer, 21(2), pp.196-201.
  • Wie, D.E., Kim, D.J., 2012. The Design Optimization of a Flow Control Fin Using CFD, Journal of the Society of Naval Architects of Korea, 49(2), pp.174-181.
  • The International Group of Liquefied Natural Gas Importers (GIIGNL), 2017. LNG information Paper No.1-Basic properties of LNG
  • Tauseef S.M, Rashtchian D. & Abbasi S.A., 2011. CFD-based simulation of dense gas dispersion in presence of obstacles, Journal of Prevention in the Process Industries, 24, pp. 371-376.
  • Sun. Biao et al., 2015. Dynamic simulation of hazard analysis of radiations from LNG pool fire, Journal of Loss Prevention in the Process Industries,35, pp. 200-210.
  • Son, B.S. and Jang, C.H., 2012. A Study on Measures to Improve Smoke Control Performance in Case of Fire in a Clean Room as an LCD Manufacturing Process, Journal of the Korean Institute of Fire Science and Engineering, 26(5), pp.41-47.
  • Sinha, R.P. and Nik W.M.N., 2011. Investigation of Propulsion System for large LNG ships, International Conference on Mechanical Engineering Research, pp. 1-16.
  • Siddiqui, M., Jayanti,S. and Swaminathan, T., 2012. CFD analysis of dense gas dispersion in indoor environment for risk assessment and risk mitigation, Journal of Hazardous materials, 209-210, pp177-185.
  • Seok. J., Jeong. S.M., Park. J. C. & Paik. J.K., 2013. CFD Simulation of Methane Combustion for Estimation of Fire and Explosion in Offshore Plant, Journal of the Ocean Engineering and Technology 27(2) pp. 59-68.
  • Seo, HK., Song, S.W., Hwang, Y.I. & Ha, H.C., 2014. Numerical Study on the HCFC- 123 Leak in Turbo Chiller by using CFD, Journal of Korean Institute of Gas, 18(5), pp.85-90.
  • Rakibuzzaman, et al. 2015. Cavitating Flow Analysis of Multistage Centrifugal Pump, Journal of the Korean Society of Fluid Machinery, 1(2), pp.65-71.
  • Qi Ruifeng et al., 2010. Numerical simulations of LNG vapor dispersion in Brayton Fire Training Field tests with ANSYS CFX, Journal of Hazardous Material, 183, pp.51- 61.
  • Pontiggiaa M. et al. 2010. Hazardous gas releases in urban areas: Assessment of consequences, Journal of Hazardous Material, 176, pp. 589-596.
  • Pontiggia M., M. Derudi, V. Busini and R. Rota 2009. Hazardous gas dispersion: A CFD model accounting for atmospheric stability classes, Journal of Hazardous Materials, 171, pp.739-747
  • Park, S.H., Ryu, M.H., Cho, L.S. & Cho, J.S., 2014. Design optimization of the staking line for an electric fan blade using CFD, Journal of the Korean Society for Aeronautical and Space Sciences, 42(11), pp.903-910.
  • Park et al., 2015. Characteristics of flow and reactive pollutant dispersion in urban street canyons, Journal of Atmospheric Environment, 108, pp.20-31.
  • Nam Y.J., Sung M.K. & Song D.S., 2011. Study on Non-uniform Thermal Comfort in Hubrid Air-Conditioning System with CFD Analysis, Journal of the Society of the Air conditioning and Refrigerating Engineers of Korea, 23(3), pp.216-222.
  • Min, D.C., Back, J.B., Ko, J.W. & Kown, H.M., 2012. CFD Simulation Study to analyze the dispersion and explosion of combustible gas. Journal of the Korean Institute of Gas, 16(5), pp.58-65.
  • Middha Prankul et al., 2010. CFD calculations of gas leak dispersion and subsequent gas explosions: Validation against ignited impinging hydrogen jet experiments, Journal of Hazardous Materials, 179, pp.84-94.
  • Mazzoldi Alberto, Hill, Tim and Colls J. Jeremy, 2008. CFD and Gaussian atmospheric dispersion models: A comparison for leak from carbon dioxide transportation and storage facilities, Journal of Atmospheric Environment, 42, pp.8046-8054.
  • Lim S.B., Kim M.K., Kang Y.H. & Park W.G., 2015. Honeycomb Labyrinth seal leakage Characteristic analysis with actual operating conditions on the compressor of Gas Turbine, Journal of the Korean Society for the Computational Fluid Engineering, 20(4), pp.102-108.
  • Lee, W.J., Lee, J H., Hur, N. & Yoon, I.S., 2015. Cavitation Analysis in a centrifugal pump using VOF method, Journal of the Korean Society for the Computational Fluid Engineering, 20(4), pp.1-6.
  • Lee, S.K., Lee, D.E., Kim, S.C. & Yoon, K.B., 2015. Dependence of Explosion Overpressure of Flammable Gas on the Changes of Volume Blockage Ratio of Facilities, Journal of the Korean Institute of Gas, 19(6), pp.54-61.
  • Lee, K.W., Heo, S.U., Kwon, S.J. & Lee, J.K., 2015. Study on Flow Analysis of Hot Gas valve with Pintle, Journal of the Korean Society of Propulsion Engineer, 19(6), pp.19-25.
  • Lee, H.R., Gong, H.J., Kim, B.S. & Lee, S.S., 2012. Prediction of Pitch and Roll Dynamic Derivatives for Flight Vehicle using CFD, Journal of the Korean Society for Aeronautical & space Science, 40(5), pp.395-404.
  • Lee, H.R., Ahn, J,H., Kim, D.K., Ahn, B.H. & Kim, H.Y., 2016. CFD Analysis and Explosion Test of a Crankcase Relief Valve Flame Arrester for LNG-Fuelled Ships, Journal of Korean Society of Manufacturing Technology Engineers, 25(3), pp.171-176.
  • Lee, C et al., 2013. Coupled flow-structure Analyses on the Rotors Type Vacuum Pumps in Semiconductor Fabrication Facility, Journal of the Korean Society for the Fluid Machinery, Vo16(2), pp.10-14.
  • Kumar Satish et al., 2011. LNG: An eco-friendly cryogenic fuel for sustainable development, Journal of Applied Energy, 88, pp.4264-4273.
  • Koopmana P. Ronald and Ermak L Donald., 2007. Lesson learned from LNG Safety Research, Journal of Hazardous Materials, 140, PP. 412-428.
  • Ko, M.W, Oh, C.B., Han, Y.S. & Do, J.H., 2015. Investigation of Turbulent Analysis Methods for CFD of Gas Dispersion around a Building, Journal of the Fire Science Engineering 29(5), pp.42-50.
  • Kim, Y.M., Shin, D.H. & Hwang, S.S., 2011. Experimental and Numerical Study on the Gas Mixing and Reaction in the Freeboard of a Fluidized Bed Incinerator for Sludge
  • Kim, S.Y., Oh, Y.J., Park, S.W. & Lee, C.S., 2012. Reduction of a Numerical Grid Dependency in High-pressure Diesel Injector Simulation Using the Lagrangian-Eulerian CFD Method, Journal of the Korean Society for Computational Fluids Engineering, 20(1), pp.39-45.
  • Kim, S.E., 2011. CFD as a seakeeping tool for ship design, Journal of Naval Architecture and Ocean Engineering, 3(1), pp.65-71.
  • Kim, K.P., Kim, Y.T. & Kang, H.K., 2015. CFD Approach on Gas Explosion for SIL in GAS Fuelled Ship, Journal of Marine Engineering, 39(2), pp.195-200.
  • Kim, K.P., Kang, H.K., Choung, C.H. & Park, J.H., 2011. On the Application of CFD Codes for Natural Gas Dispersion and Explosion in Gas Fueled Ship. Journal of the Korean Society of marine Engineering, 35(7), pp. 946-956, 2011.
  • Kim, J.W., Han, Y.S., Choi, K. & Lee, J.H., 2013. Application of CFD Simulation In SIC-CVD Process, Journal of the Korean Society for Computational Fluids Engineering, 18(3), pp.67-71.
  • Kim, J.H et al., 2011. Thermal Fluid Flow Analysis for Temperature Characterization of Mold Transformer in Distribution Power System, Journal of the Transactions of the Korean Institute of Electrical Engineer, 62(1), pp.6-11.
  • Kim, H.Y., Cho, L.S. & Cho, J.S., 2011. CFD analysis of the Dick Friction Loss on the Centrifugal Compressor Impeller, Journal of the Korean Society for Aeronautics & Space Science, 39(17), pp.596-604.
  • Kim, E.S. & Jeong, H.T., 2014, Aerodynamic Design and Performance Prediction of Rotor Blades in a Single-Stage Axial Fan Using CFD Method, Journal of the Korean Society for Computational Fluids Engineering, 29(3), pp.93-98.
  • Kim K. P., 2016. CFD study on the quantitative risk analysis for the fuel gas supply system of the gas fuelled ship. Ph.D. University of Korea Maritime and Ocean University.
  • Kim J.W., Park J.K., Kang Y.S. & Jo J.S., 2015. Conjugate Heat transfer Analysis fir High Pressure Cooled Turbine vane in Aircraft Gas Turbine, Journal of the Korean Society for the Fluid Machinery, 18(2), pp.60-66.
  • Kang.H.K., 2013. An Examination on the Dispersion Characteristics of Boil-Off Gas in Vent Mast Exit of Membrane type LNG Carriers, Journal of the Korean Society of Marine Environment & Safety, 19(2), pp.225-231.
  • Kang S.K., Bang H.J. & Jo Y.D., 2013. Consequence Analysis of Hydrogen Blended natural Gas(HCNG) using 3D Simulation, Analysis of Hydrogen Blended Natural gas, Journal of the Korean Institute of Gas, Vo17(5), pp.15-21.
  • Joo, H.J., Jung, I.Y., Yun, S.K. &Kwak, H.Y., 2015. CFD analysis on the flow Characteristics of Ejector According to the Position Changes of Driving Nozzles for F.W.G, Journal of the Korean Solar Energy Society, 31(3), pp.23-28.
  • Jin S.W. et al., 2009. Development of Gas Turbine Engine, Simulation Program Based on CFD, Journal of the Korean Society of Propulsion Engineer, 13(2), pp.42-53
  • Jang, et al., 2012. CFD simulation study to analyze the Dispersion and Explosion of Combustible Gas, Journal of the Korean Institute of Gas, 16(15), pp.58-65
  • Jang, Y.R., Jung, S.H. & Park, K.S., 2015.Consequence Analysis for Accidental Gas Release in Labs, Journal of the Korean Institute of Gas, 19(4), pp.29-34.
  • IGC CODE, 2014. Resolution MSC 370(93) (adopted on 22 May 2014) Amendments to the international code for the construction and equipment of ships carrying liquefied gases in bulk
  • Hooff.T. van & Blocken.B., 2013. CFD evaluation of natural ventilation of indoor environments by the concentration decay method: CO2 gas dispersion from a semienclosed stadium, Journal of the Building and Environment 61, pp.1-17.
  • Heo, Y. A., 2013. Structural Response of Offshore Plants to Risk-Based Blast Load, Journal of ARCHITECTURAL RESEARCH, 15, pp.151-158.
  • Heo, S.J., Kim, M.S., Han, H.S. & Jeong, W.B., 2011. Prediction of Two-phase Flow Pattern and Noise Evaluation for Evaporator Pipe in a Refrigerator, Journal of the Korean Society for Noise and Vibration Engineering, 21(10), pp.916-923.
  • Hannaa R. Steven, Hansen R. Olav and Dharmavaram Seshu., 2004. FLACS CFD air quality model performance evaluation with Kit Fox, MUST, Prairie Grass, and EMU observations, Journal of Atmospheric, 38, pp.4675-4687.
  • Hanna Steven R. Hansen Olav R., Ichard Mathieu., 2009. CFD model simulation of dispersion railcar releases industrial and urban areas, Journal of Atmospheric Environment, 43, pp.262-270.
  • Ha, J.S. & Sim, S.H., 2014. Characteristics of Entertainment Flow Rate in a Coanda Nozzle with or without Coaxial Contractor, Journal of the Korean Institute of Gas, 18(2), pp.21-27.
  • Gavelli Flippo, Bullister Edward & KytommaaHarri, 2008. Application of CFD to LNG spills into geometrically complex environments, Journal of Hazardous Materials, 159, pp.158-168.
  • Eidsvik Karl J., 1980. A model for Heavy Gas Dispersion in the atmosphere, Journal of Atmospheric Environment, 14, pp. 769-777.
  • Dan, S.K., et al., 2011. Explosion Simulation for the Quantitative Risk Analysis of New Energy Filling Stations, Journal of the Korean Institute of Gas, 15(1), pp.61-67.
  • Cormier, B.R., 2008. Computational Fluid Dynamics for LNG Vapor Dispersion Modeling: A Key Parameters study, Ph.D. Texas A&M University.
  • Choi. J.W. et al., 2015. Analysis of Risk Assessment Factors for Gas leakage and Dispersion in Underground Power Plant, Journal of ILASS-KOREA, 20(2), 101
  • Choi, N.J, et al., 2011. CFD Study on Aerodynamic Power Output of 6 MW Offshore Wind Farm According to the Wind Turbine Separation Distance, Journal of the Korean Society pf Marine Engineering, 35(8), pp.1063-1069.
  • Choi, D.H. & Kang, D.H., 2013. Experimental and Computational Fluid Dynamics(CFD) Methods to Analyze Particle Resuspension and Dispersion Buildings, Journal of the Architectural Institute of Korea, 29(10), pp.275-282.
  • Cho, K.C., Kim, H.J. & Jang, S.B., 2011. Application of CFD in The Analysis of Aerodynamic Characteristics for Aircraft Propellers, Journal of the Korean Society for Aeronautical & space Sciences, 40(11), pp.917-926.
  • Cho, H.W. et al., 2012. Study on Dispersion Characteristic for Fire Scenarios in an Urban Area Using a CFD-WRF Coupled Model, Journal of the Meteorological Society, 22(1), pp.47-55.
  • Cho, H.C., 2005. A CFD Study on Thermo-Acoustic Instability of Methane/Air in Gas Turbine Combustor, Journal of Mechanical Science Technology, 19(9), pp.1811-1820.
  • Chan S. T., 1992. Numerical simulations of LNG vapor dispersion fenced storage area, Journal of hazardous Materials, 30, pp.195-224
  • Benjamin R et al., 2009. Application of computational fluid dynamics for LNG vapor dispersion modeling : A study of key parameters, Journal of Prevention in the Process Industries, 22, pp.332-352.
  • Baek J.H., Lee H.J. & Jang C.B., 2016. Comparison of H2, LNG and LPG explosion characteristics in a limited space, Journal of the Korean Institute of Gas, 20(3), pp.12- 21.
  • B fjord J. Andre., 2011. Positioning of gas detector at offshore installations. M.D. University of Stavanger.
  • AnayLuketa-Hanlin., Ronald P. Koopman. and Donald L. Ermak., 2007. On the application of computational dynamics codes for liquefied natural gas dispersion, Journal of Hazardous Material, 40, pp.504-517
  • ANSYS “FLUENT-14 solver theory manual”