• Title/Summary/Keyword: 플랜트 4D

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Development of Major Functions of Visualization System for Construction Schedule Data in Plant Project (플랜트공사 관리 효율화를 위한 공정정보 시각화 시스템의 주요 기능 구성방안)

  • Kang, Leen-Seok;Moon, Hyoun-Seok;Ji, Sang-Bok;Lee, Tae-Sik
    • Korean Journal of Construction Engineering and Management
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    • v.9 no.1
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    • pp.66-76
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    • 2008
  • Plant project is a complex project that consists of civil engineering, building, mechanical and electronic works. The schedule management is one of important factors in plant project because the construction duration of the project is very short comparing with the other construction projects. Specially, 4D CAD system needs to visualize construction schedule information in those complex projects. This study suggests methodologies for improving 4D CAD functions by considering those project characteristics. To develop a plant 4D CAD system, this study includes to develop new functions by analyzing actual schedule information from the plant construction sites.

Development of a Similarity Evaluation System for Offshore Plants' 3D Piping CAD Models Created Using Aveva Marine and SmartMarine 3D (Aveva Marine과 SmartMarine 3D 간의 해양 플랜트 3D 배관 CAD 모델 유사도 평가 시스템 개발)

  • Lee, Jaesun;Kim, Byung Chul;Kim, Hyungki;Cheon, Sanguk;Cho, Mincheol;Lee, Gwang;Kim, Jin-Hyun;Mun, Duhwan;Han, Soonhung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.40 no.4
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    • pp.397-406
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    • 2016
  • Diverse stakeholders engaged in design, construction, and operation and maintenance of offshore plants typically operate heterogeneous plant 3D CAD systems. Engineering, procurement, and construction (EPC) companies are required to submit plant design result to the owner in the form of a plant 3D CAD model, as specified in the contract. However, because of the limitations of data interface of plant 3D CAD systems, EPC companies frequently perform manual remodeling to fulfill the terms and conditions of the contract. Therefore, comparison should be performed between the source plant 3D CAD model and the remodeled plant 3D CAD model to prove the validity of the remodeled plant 3D CAD model. To automate the comparison process, we have developed a system for quantitatively assessing the similarity of the plant 3D CAD models. This paper presents the architecture and detailed functions of the system. In addition, experimental results using this system are explained.

Improved Link System of Schedule and 3D Object for Visualizing Effective 4D Model on Plant Project (플랜트 4D의 효율적 공정연계체계를 위한 일정 및 도면의 개선된 연계방법론 구축)

  • Kang, Leen-Seok;Moon, Hyoun-Seok;Park, Seo-Young;Yoon, Sun-Mi
    • Proceedings of the Korean Institute Of Construction Engineering and Management
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    • 2006.11a
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    • pp.559-562
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    • 2006
  • Existing 4D systems are using the 1:1 link system that directly links a schedule and a 3D model object. But considering that plant facility includes various kinds of schedule and 3D model object, this study suggests an improved link methodology of multi-selected objects and two-way link system for minimizing link errors which generated in case of multi-selected objects. For the link system, this study introduces a new concept called as interface board. Interface board can be used as an information center for representing all information of link items in the current project. It may be expected that 4D model can build an effective and rapid link system of plant project by this new approach.

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The establishment of R&D management system for Gas Plant R&D Center (가스플랜트 사업단에서 연구관리스템 구축)

  • Hwang, Seong Ha;Yoo, Sun Il;Nam, Tae Hwan
    • Journal of the Korean Society of Systems Engineering
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    • v.4 no.1
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    • pp.19-29
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    • 2008
  • Traditionally gas plant R&D has had a world-wide weak position in terms of high technology. Especially System engineering did not exactly apply to gas plant construction. So, Gas Plant R&D Center is determined to make the establishment of the system engineering for the standard of gas plant. Gas Plant R&D Center has two projects. Firstly, the establishment of the R&D management system. Secondly, the system engineering which is included in the VE concept of EPC parts. But Gas Plant R&D Center exists in the particular conditions for successful development of the new process and core equipments. Now we will describe the establishment of R&D management system and particular conditions(Risk Conditions) for gas plant.

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Improvement of 3D Design Process in the Combined Cycle Power Plant Using Business Process Reengineering (복합화력 발전플랜트에서 업무재설계기법을 이용한 3차원설계의 개선방안)

  • Choi, Hong-Yeol;Moon, Seung-Jae
    • Plant Journal
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    • v.8 no.3
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    • pp.55-63
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    • 2012
  • This study aims to suggest the improved business process by analyzing the current design process on work flow of the 3D design of power plant, drawing a problems and setting the improving direction through the integration method of the business process reengineering(BPR). In order to realize the improved business process, the integrated design performance system focused on the 3D design was established and accordingly the study analyzed cases of project performances through the integration system and drew the improved effects quantitatively. In the result of the project performance applied with the 3D design integration system, it showed 20.4% design cost saving effect for appropriate rated cost and the integration of design information from each design parts, sub contracters and vendors reduced overlapped works and improved the consistency of repeated design alteration.

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Function Organization of nD CAD System for Plant Project by Linking Cost and Resource Information (비용과 자원을 연계한 플랜트공사 nD CAD 시스템 기능 구성 방안)

  • Kang, Leen-Seok;Ji, Sang-Bok;Moon, Hyoun-Seok;An, Jae-Kyu
    • Proceedings of the Korean Institute Of Construction Engineering and Management
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    • 2007.11a
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    • pp.809-812
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    • 2007
  • This study suggests a methodology for organizing functions of nD CAD model which 4D object is linked with cost and resource information. And the suggested model is composed of process analysis function of plant project based on visualized scenario analysis. That is, it is possible to manage effectively not only construction schedule plan, but also resource and cost information by integrating construction management information into nD CAD object. And the suggested model can be utilized as information of a effective decision-making tool through analyzing of optimal process scenario and sharing of an analyzed information.

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Man-hour Reduction by Development of Library in a 3-D Design System for Plant Projects (플랜트 프로젝트용 3차원 디자인 시스템에서 라이브러리 개발을 통한 설계시간 감축)

  • Lee, Jung-Hyun;Moon, Seung-Jae;Yoo, Hoseon
    • Plant Journal
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    • v.5 no.4
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    • pp.68-72
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    • 2009
  • This study discussed for library development of the 3 dimensional design system for the progressive developmental world wide plant industry. Its previous background had spatial limitation by utilizing 2 dimensional CAD. This work presented an effective mode for improving man-hour by applying with 3 dimensioal design system through theoretical definition, category, and means of basic man-hour. We researched an effective method for reducing man-hour through applied example on the actual project by comprehending affection of extra development for library on man-hour.

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Effect of Fermented Ice Plant (Mesembryanthemum crystallinum L.) Extracts against Antioxidant, Antidiabetic and Liver Protection (아이스플랜트(Mesembryanthemum crystallinum L.) 발효추출물의 항산화, 항당뇨 및 간 보호효과)

  • Nam, Sanghae;Kang, Seungmi;Kim, Seonjeong;Ko, Keunhee
    • Journal of Life Science
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    • v.27 no.8
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    • pp.909-918
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    • 2017
  • Ice plant (Mesembryanthemum crystallinum L.) was fermented in brine in the form of mulkimchi (IPMB), and its contents of organic acid and cyclitols and biological activities were compared with those before fermentation. The pH of the IPMB continuously decreased until the sixth day of fermentation. The lactic acid yield was greatest on the fourth day. D-pinitol in ice plant mulkimchi solids (IPMS) decreased during fermentation. However, myo-inositol and D-chiro-inositol increased. The radical scavenging activities of ABTS and DPPH, in addition to the activity of FRAP, of the IPMS extract were generally higher after fermentation, with the activities highest on the fifth ($79.09{\pm}0.69%$), fourth ($87.55{\pm}1.21%$), and sixth ($78.72{\pm}0.99%$) days of fermentation, respectively, when treated with 1 mg/ml of the extract. As shown by a lipid/MA assay, antioxidant activity was generally higher after fermentation. The viability of BNL CL.2 cells damaged by t-BHP, $H_2O_2$, and ethanol was $14.19{\pm}0.98$, $13.80{\pm}2.25$, and $25.89{\pm}2.90%$, respectively. When treated with $200{\mu}g/ml$ of IPMS extract, the cell viability was $57.06{\pm}4.52%$ on the first day, and $66.06{\pm}1.36%$ on the fourth day, and $50.07{\pm}04.85%$ on the sixth day of fermentation. Hepatocyte protective effects did not increase significantly after fermentation. ${\alpha}-glucosidase$ inhibitory activity was quite high, with a range of $83.52{\pm}2.69$ to $92.79{\pm}2.16%$, and the activity increased gradually in all the groups over the fermentation period. There was no clear correlation between ${\alpha}-amylase$ inhibitory activity and fermentation.

Stability Analysis of Pipe Rack Module for Underground Complex Plants Construction (복합플랜트 지하 건설을 위한 파이프랙 모듈 공법 안정 해석)

  • Kim, Sewon;Lee, Sangjun;Kim, YoungSeok
    • Journal of the Korean Geosynthetics Society
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    • v.20 no.4
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    • pp.113-124
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    • 2021
  • Underground environmental infrastructure and energy production facilities, which are recognized as avoidable facilities such as landfills, are emerging as an important social issue due to urbanization and economic growth. In order to safely construct a large-scale plant facility in the underground space, it is necessary to increase the utilization of the limited space layout and minimize unnecessary columns. In this study, the plant modularization method(Pipe Rack Module) was reviewed to solve the problems of work constraints, assembly and demolition, process system interconnection, and maintenance that occur when plant facilities are underground. In addition, plant module analysis was performed by applying various load conditions (earthquake load, device load, earth pressure load, etc.) to improve spatial layout usability and secure structure stability. Based on the analysis results under various boundary condition, the implications regarding the minimum installation interval and module arrangement (draft) of basic modules required for the construction of an underground combined plant were derived.