期刊文献+

基于BIM的机电设备智能管理系统 被引量:57

A BIM-based Facility Intelligent Management System
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摘要 传统的机电设备运维信息主要来源于纸质的竣工资料,在用到这些信息时,往往要从海量纸质的图纸和文档中去寻找。如何采用电子化手段有效地组织这些信息,以实现设计和施工阶段的有效信息能传递到运维期并辅助运维管理,是当前建筑生命周期管理中需要解决的重要问题。本研究通过引入建筑信息模型(BIM)和二维码技术,开发基于BIM的机电设备智能管理系统(BIM-FIM2012),实现了机电设备工程的电子化集成交付,以及建筑物运维期的维护维修管理和应急管理,为保障所有设备系统的安全运行提供高效的手段和系统平台支持。 Traditionally,operation and maintenance information for MEP mainly comes from completion data in the forms of drawings or documents.When the information is needed,it requires manual searches from such a huge amount of paper files.In order to realize the information transmission from design and construction phases to operation and maintenance period,effectively organization of such information by electronic means is the key issue to be resolved in current building lifecycle management.This can also enhance the information-aided maintenance.By introducing Building Information Model (BIM) and two-dimensional code,a BIM-based Facility Intelligent Management System (BIM-FIM 2012) is developed to realize the electronic integrated delivery of MEP,and to improve the maintenance management and emergency management of a building during its operation and maintenance period.The system also provides an effective way and platform to ensure the safe operations of all MEP systems.
出处 《土木建筑工程信息技术》 2013年第1期17-21,共5页 Journal of Information Technology in Civil Engineering and Architecture
关键词 机电设备工程 运维期 建筑信息模型 物业管理 二维码 MEP Engineering Operation and Maintenance Period Building Information Model (BIM) Facility Management Two-dimensional Code
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参考文献16

  • 1Korman T M,Fischer M A,Tatum C B. Knowledge and reasoning for MEP coordination[J].Journal of Construction Engineering and Management,2003,(06):627-634.
  • 2Foms-Samso F,Bogus S M,Migliaccio G C. Use of Building Information Modeling (BIM) in facilities management[M].Canada:Ottawa,2011.
  • 3Sciences N I O B. National Building Information Modeling Standard Verion1-Part1:Overview,Principles,and Methodologies[M].America,2007.
  • 4Korman T M,Tatum C B. Prototype tool for mechanical,electrical,and plumbing coordination[J].Journalof Computing in Civil Engineering,2006,(01):38-48.
  • 5Korman T M,Simonian L,Speidel E. Using building information modeling to improve the mechanical,electrical,and plumbing coordination process for buildings[M].Denver,United states,2008.
  • 6Leite F,Akcamete A,Akinci B. Analysis of modeling effort and impact of different levels of detail in building information models[J].Automation in Construction,2011,(05):601-609.
  • 7Khanzode A,Fischer M,Reed D. Benefits and lessons learned of implementing Building Virtual Design and Construction (VDC) technologies for coordination of Mechanical,Electrical,and Plumbing (MEP) systems on a large Healthcare project[J].Electronic Journal of Information Technology in Construction,2008.324-342.
  • 8Riley D R,Varadan P,James J S. Benefit-cost metrics for design coordination of mechanical,electrical,and plumbing systems in multistory buildings[J].Journal of Construction Engineering and Management,2005,(08):877-889.doi:10.1061/(ASCE)0733-9364(2005)131:8(877).
  • 9Tabesh A R,Staub-French S. Modeling and coordinating building systems in three dimensions:A case study[J].Canadian Journal of Civil Engineering,2006,(12):1490-1504.doi:10.1139/L06-124.
  • 10Korman T M,Lu N. Innovation and improvements of mechanical electrical and plumbing systems for modular construction using building information modeling[M].Oakland,United states,2011.

二级参考文献6

  • 1崔琦,张静平.智能建筑物业管理存在的问题及其对策[J].长春工程学院学报(社会科学版),2005,6(2):48-49. 被引量:6
  • 2徐正元,王盛卫.基于OPC及WEB SERVICES中间件技术的智能建筑集成系统[J].智能建筑与城市信息,2007(1):42-45. 被引量:3
  • 3张建平.信息化土木工程设计;Autodesk Civil 3D[M].北京:中国建筑工业出版社,2006.
  • 4IAI. International Alliance for Interoperability [EB/OL]. (2002) http: //www. iai-interoperability. org.
  • 5Liebich T. IFC2x Model Implementation Guide [M], New York: IAI Press, 2003.
  • 6WANG Shengwei, XU Zhengyuan, CAO Jiannong, et al. A middleware for web service-enabled integration and interoperation of intelligent building systems [J], Automation in Construction, 2007, 16(1): 112-121.

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