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Conceptual design of a web-based LNG plant management system through adoption of the integrated environment for design and maintenance
The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the design stage through the operational lifetime of the plant. The usefulness of this program is maximized by combining a virtual plant and RAMS (Reliability, availability, main...
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Published in | Journal of mechanical science and technology Vol. 28; no. 9; pp. 3759 - 3767 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Heidelberg
Korean Society of Mechanical Engineers
01.09.2014
Springer Nature B.V 대한기계학회 |
Subjects | |
Online Access | Get full text |
ISSN | 1738-494X 1976-3824 |
DOI | 10.1007/s12206-014-0838-3 |
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Abstract | The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the design stage through the operational lifetime of the plant. The usefulness of this program is maximized by combining a virtual plant and RAMS (Reliability, availability, maintainability and safety). To achieve this goal, principles related to a virtual plant and RAMS are reviewed and several modules were designed. In particular, the RBI (Risk based inspection) module based on the API (American Petroleum Institute) code was developed for implementing RAMS. To review the design and deliver geometrical information regarding the system and processes, several commercial softwares are chosen to develop the navigator module and virtual module of LPMS-RAMS (LNG Plant Management System based on RAMS). Also, several modules related to maintenance and safety, are developed. It means that the LPMS-RAMS has many applicable modules based on the concept of virtual plant and RAMS. Especially, The VR (Virtual reality) module in this system will be useful during the design stage for diverse types of LNG plants. Also, the RAMS module is expected to improve the efficiency and safety of the LNG plant during its operation. |
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AbstractList | The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the designstage through the operational lifetime of the plant. The usefulness of this program is maximized by combining a virtual plant andRAMS (Reliability, availability, maintainability and safety). To achieve this goal, principles related to a virtual plant and RAMS arereviewed and several modules were designed. In particular, the RBI (Risk based inspection) module based on the API (American PetroleumInstitute) code was developed for implementing RAMS. To review the design and deliver geometrical information regarding thesystem and processes, several commercial softwares are chosen to develop the navigator module and virtual module of LPMS-RAMS(LNG Plant Management System based on RAMS). Also, several modules related to maintenance and safety, are developed. It meansthat the LPMS-RAMS has many applicable modules based on the concept of virtual plant and RAMS. Especially, The VR (Virtual reality)module in this system will be useful during the design stage for diverse types of LNG plants. Also, the RAMS module is expected toimprove the efficiency and safety of the LNG plant during its operation. KCI Citation Count: 0 The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the design stage through the operational lifetime of the plant. The usefulness of this program is maximized by combining a virtual plant and RAMS (Reliability, availability, maintainability and safety). To achieve this goal, principles related to a virtual plant and RAMS are reviewed and several modules were designed. In particular, the RBI (Risk based inspection) module based on the API (American Petroleum Institute) code was developed for implementing RAMS. To review the design and deliver geometrical information regarding the system and processes, several commercial softwares are chosen to develop the navigator module and virtual module of LPMS-RAMS (LNG Plant Management System based on RAMS). Also, several modules related to maintenance and safety, are developed. It means that the LPMS-RAMS has many applicable modules based on the concept of virtual plant and RAMS. Especially, The VR (Virtual reality) module in this system will be useful during the design stage for diverse types of LNG plants. Also, the RAMS module is expected to improve the efficiency and safety of the LNG plant during its operation.[PUBLICATION ABSTRACT] The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the design stage through the operational lifetime of the plant. The usefulness of this program is maximized by combining a virtual plant and RAMS (Reliability, availability, maintainability and safety). To achieve this goal, principles related to a virtual plant and RAMS are reviewed and several modules were designed. In particular, the RBI (Risk based inspection) module based on the API (American Petroleum Institute) code was developed for implementing RAMS. To review the design and deliver geometrical information regarding the system and processes, several commercial softwares are chosen to develop the navigator module and virtual module of LPMS-RAMS (LNG Plant Management System based on RAMS). Also, several modules related to maintenance and safety, are developed. It means that the LPMS-RAMS has many applicable modules based on the concept of virtual plant and RAMS. Especially, The VR (Virtual reality) module in this system will be useful during the design stage for diverse types of LNG plants. Also, the RAMS module is expected to improve the efficiency and safety of the LNG plant during its operation. |
Author | Lee, Jung-Min Kim, Joo-Dong Choi, Shin-Beom Choi, Jae-Boong Kim, Moon-Ki Hwang, In-Ju Choi, Song-Chun |
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References | Right-Hemisphere, www.right-connect.com, 19/05/2014. LeeS. M.ChangY. S.ChoiJ. B.KimY. J.Application of an enhanced RBI method for petrochemical equipmentsJournal of Pressure Vessel Technology200612844545310.1115/1.2218350 ChoiJ. B.YeomS. W.KoH. O.KimY. J.KimH. K.ChoiY. H.ParkY. W.Development of a web-based aging monitor system for an integrity evaluation of major components in a nuclear power plantInternational Journal of Pressure Vessels and Piping2010871334010.1016/j.ijpvp.2009.11.007 KrauseH.Virtual commissioning of a large LNG plant with the DCS “800XA” by ABB6th EUROSIM Congress on Modeling and Simulation2007 ParkB. S.HanS. I.ChoiS. C.KimJ. Y.ChungT. S.Selection of process representative materials and analysis of consequence for developing KGS-RBI program of petrochemical plantTheories and Applications of Chemical Engineering200410223792382 API Recommended Practice 581, American Petroleum Institute, Washington, USA (2007). ChangK. P.MarvinR.JørnV.Reliability assessment of reliquefaction systems on LNG carriersReliability Engineering System Safety2008931345135310.1016/j.ress.2006.11.005 ChoiS. C.HanS. I.JungH. J.KimJ. Y.SongS. J.Development and application of risk-based inspection for refinery unitProceeding of the ASME 2005 Pressure Vessels & Piping Division Conference2005405409 National Institute of Standards and Technology, cryogenics. nist.gov, 19/05/2014. KimY. G.KimJ. D.ChoiJ. B.Development of a web-based LNG plant management system for reliability assessment covering from design stage to maintenanceProceeding of the ASME 2010 Pressure Vessels & Piping Division / K-PVP Conference201064164510.1115/PVP2010-26016 API base resource document 581, 1st ed., American Petroleum Institute, Washington, USA (2000). SikosL.KlemesJ.Evaluation and assessment of reliability and availability software for securing an uninterrupted energy supplyClean Technologies and Environmental Policy20101213714610.1007/s10098-009-0243-2 KimJ. D.ChoiS. B.ChoiJ. B.LeeH. C.HwangI. J.Design optimization of Air Separation Unit in use of design optimized techniques based on Virtual Plant2010 Spring Conference of the Society of Air-Conditioning and Refrigerating Engineers of Korea2010South KoreaPyeongchang771776 SeifertT.SieversS.BramsiepeC.SchembeckerG.Small scale, modular and continuous: A new approach in plant designChemical Engineering and Processing: Process Intensification20125214015010.1016/j.cep.2011.10.007 WakitaA.YajimaM.HaradaT.ToriyaH.ChiyokuraH.XVL: A Compact and Qualified 3D Representation with Lattice Mesh and Surface for the InternetProceedings of the fifth symposium on Virtual reality modeling language2000455110.1145/330160.330174 ShoumingH.QianS.XVL based study on 3D virtual product display systemApplied Mechanics and Materials2013333–33523912395 ParkB. S.LeeD. H.ChungT. S.HanS. I.ChoiS. C.Application of KGS-RBI™ program developed for petrochemical plantTheories and Applications of Chemical Engineering20051111096 Gas Plant R&D Center, www.gasplant.or.kr, 19/05/2014. EtiM. C.OgajiS. O. T.ProbertS. D.Integrating reliability, availability, maintainability and supportability with risk analysis for improved operation of the Afam thermal power-stationApplied Energy20078420222110.1016/j.apenergy.2006.05.001 Y. G. Kim (838_CR13) 2010 J. D. Kim (838_CR8) 2010 B. S. Park (838_CR15) 2005; 11 S. M. Lee (838_CR19) 2006; 128 838_CR1 A. Wakita (838_CR9) 2000 K. P. Chang (838_CR5) 2008; 93 S. C. Choi (838_CR17) 2005 838_CR18 J. B. Choi (838_CR4) 2010; 87 T. Seifert (838_CR3) 2012; 52 B. S. Park (838_CR14) 2004; 10 L. Sikos (838_CR6) 2010; 12 H. Krause (838_CR7) 2007 838_CR10 838_CR12 M. C. Eti (838_CR2) 2007; 84 H. Shouming (838_CR11) 2013; 333–335 838_CR16 |
References_xml | – reference: API Recommended Practice 581, American Petroleum Institute, Washington, USA (2007). – reference: Gas Plant R&D Center, www.gasplant.or.kr, 19/05/2014. – reference: EtiM. C.OgajiS. O. T.ProbertS. D.Integrating reliability, availability, maintainability and supportability with risk analysis for improved operation of the Afam thermal power-stationApplied Energy20078420222110.1016/j.apenergy.2006.05.001 – reference: ParkB. S.HanS. I.ChoiS. C.KimJ. Y.ChungT. S.Selection of process representative materials and analysis of consequence for developing KGS-RBI program of petrochemical plantTheories and Applications of Chemical Engineering200410223792382 – reference: API base resource document 581, 1st ed., American Petroleum Institute, Washington, USA (2000). – reference: ShoumingH.QianS.XVL based study on 3D virtual product display systemApplied Mechanics and Materials2013333–33523912395 – reference: WakitaA.YajimaM.HaradaT.ToriyaH.ChiyokuraH.XVL: A Compact and Qualified 3D Representation with Lattice Mesh and Surface for the InternetProceedings of the fifth symposium on Virtual reality modeling language2000455110.1145/330160.330174 – reference: LeeS. M.ChangY. S.ChoiJ. B.KimY. J.Application of an enhanced RBI method for petrochemical equipmentsJournal of Pressure Vessel Technology200612844545310.1115/1.2218350 – reference: SikosL.KlemesJ.Evaluation and assessment of reliability and availability software for securing an uninterrupted energy supplyClean Technologies and Environmental Policy20101213714610.1007/s10098-009-0243-2 – reference: SeifertT.SieversS.BramsiepeC.SchembeckerG.Small scale, modular and continuous: A new approach in plant designChemical Engineering and Processing: Process Intensification20125214015010.1016/j.cep.2011.10.007 – reference: KimY. G.KimJ. D.ChoiJ. B.Development of a web-based LNG plant management system for reliability assessment covering from design stage to maintenanceProceeding of the ASME 2010 Pressure Vessels & Piping Division / K-PVP Conference201064164510.1115/PVP2010-26016 – reference: ChoiJ. B.YeomS. W.KoH. O.KimY. J.KimH. K.ChoiY. H.ParkY. W.Development of a web-based aging monitor system for an integrity evaluation of major components in a nuclear power plantInternational Journal of Pressure Vessels and Piping2010871334010.1016/j.ijpvp.2009.11.007 – reference: KimJ. D.ChoiS. B.ChoiJ. B.LeeH. C.HwangI. J.Design optimization of Air Separation Unit in use of design optimized techniques based on Virtual Plant2010 Spring Conference of the Society of Air-Conditioning and Refrigerating Engineers of Korea2010South KoreaPyeongchang771776 – reference: ChoiS. C.HanS. I.JungH. J.KimJ. Y.SongS. J.Development and application of risk-based inspection for refinery unitProceeding of the ASME 2005 Pressure Vessels & Piping Division Conference2005405409 – reference: Right-Hemisphere, www.right-connect.com, 19/05/2014. – reference: KrauseH.Virtual commissioning of a large LNG plant with the DCS “800XA” by ABB6th EUROSIM Congress on Modeling and Simulation2007 – reference: ChangK. P.MarvinR.JørnV.Reliability assessment of reliquefaction systems on LNG carriersReliability Engineering System Safety2008931345135310.1016/j.ress.2006.11.005 – reference: National Institute of Standards and Technology, cryogenics. nist.gov, 19/05/2014. – reference: ParkB. S.LeeD. H.ChungT. S.HanS. I.ChoiS. C.Application of KGS-RBI™ program developed for petrochemical plantTheories and Applications of Chemical Engineering20051111096 – start-page: 771 volume-title: 2010 Spring Conference of the Society of Air-Conditioning and Refrigerating Engineers of Korea year: 2010 ident: 838_CR8 – start-page: 405 volume-title: Proceeding of the ASME 2005 Pressure Vessels & Piping Division Conference year: 2005 ident: 838_CR17 – ident: 838_CR16 – ident: 838_CR18 – volume: 12 start-page: 137 year: 2010 ident: 838_CR6 publication-title: Clean Technologies and Environmental Policy doi: 10.1007/s10098-009-0243-2 – ident: 838_CR12 – volume: 93 start-page: 1345 year: 2008 ident: 838_CR5 publication-title: Reliability Engineering System Safety doi: 10.1016/j.ress.2006.11.005 – volume: 11 start-page: 1096 issue: 1 year: 2005 ident: 838_CR15 publication-title: Theories and Applications of Chemical Engineering – ident: 838_CR1 – volume: 52 start-page: 140 year: 2012 ident: 838_CR3 publication-title: Chemical Engineering and Processing: Process Intensification doi: 10.1016/j.cep.2011.10.007 – start-page: 641 volume-title: Proceeding of the ASME 2010 Pressure Vessels & Piping Division / K-PVP Conference year: 2010 ident: 838_CR13 doi: 10.1115/PVP2010-26016 – ident: 838_CR10 – volume-title: 6th EUROSIM Congress on Modeling and Simulation year: 2007 ident: 838_CR7 – start-page: 45 volume-title: Proceedings of the fifth symposium on Virtual reality modeling language year: 2000 ident: 838_CR9 doi: 10.1145/330160.330174 – volume: 87 start-page: 33 issue: 1 year: 2010 ident: 838_CR4 publication-title: International Journal of Pressure Vessels and Piping doi: 10.1016/j.ijpvp.2009.11.007 – volume: 128 start-page: 445 year: 2006 ident: 838_CR19 publication-title: Journal of Pressure Vessel Technology doi: 10.1115/1.2218350 – volume: 84 start-page: 202 year: 2007 ident: 838_CR2 publication-title: Applied Energy doi: 10.1016/j.apenergy.2006.05.001 – volume: 333–335 start-page: 2391 year: 2013 ident: 838_CR11 publication-title: Applied Mechanics and Materials – volume: 10 start-page: 2379 issue: 2 year: 2004 ident: 838_CR14 publication-title: Theories and Applications of Chemical Engineering |
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Snippet | The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the design stage through the... The present paper aims to suggest a web-based LNG (Liquefied natural gas) plant management system that is applicable from the designstage through the... |
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SubjectTerms | Control Design engineering Dynamical Systems Engineering Industrial and Production Engineering Liquefied natural gas Maintenance Mechanical Engineering Modules Plant management Rams Safety Vibration Virtual reality 기계공학 |
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Title | Conceptual design of a web-based LNG plant management system through adoption of the integrated environment for design and maintenance |
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Volume | 28 |
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ispartofPNX | Journal of Mechanical Science and Technology, 2014, 28(9), , pp.3759-3767 |
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