期刊文献+

面向大容量电站锅炉产品研发的工程分析支持系统 被引量:1

Engineering analysis support system oriented to large-capacity power station boiler R&D
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摘要 针对当前大容量超临界循环流化床锅炉产品在工程分析计算中存在的易用性差、流程缺乏有效管理、工程计算数据缺乏有效组织和重用机制等问题,对流程驱动的工程分析、跨平台远程计算、综合数据管理等关键技术进行了研究,提出了面向大容量电站锅炉产品研发的工程分析支持系统三层体系架构,给出了实现方案并开发了相应的支持系统。通过在大型电站锅炉企业的应用,该系统实现了工程分析过程及其数据的高效管理和重用,有助于企业核心研发知识的不断积累,持续提升核心竞争力。 In view of the issues existed in the current engineering analysis of large-capacity supercritical Circulating Fluidized Bed(CFB)boiler such as unfriendly usability,lack of effective process management and no engineering data organization and reuse mechanism,key technologies involving in process-driven engineering analysis,cross-platform remote computing,and comprehensive data management were studied.A three-tier architecture of engineering analysis support system oriented to the large-capacity power station boiler RD was proposed.The corresponding implementation scheme was presented and the engineering analysis support system,called PDAE-PSB,was also developed.With the application of PDAE-PSB in a certain large power station boiler corporation,the highly effective management and reuse of engineering analysis process and its data were achieved,which helped the enterprise to accumulate the product RD knowledge and to enhance the core competitiveness.
作者 凌卫青 王坚
出处 《计算机集成制造系统》 EI CSCD 北大核心 2010年第4期738-745,共8页 Computer Integrated Manufacturing Systems
基金 国家科技支撑计划资助项目(2006BAF01A46-1) 上海市科委重大攻关资助项目(08DZ1120802)~~
关键词 大容量电站 锅炉 产品设计 循环流化床 工程分析 支持系统 large-capacity power station boiler product design circulating fluidied bed engineering analysis support system
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参考文献13

  • 1骆仲泱,何宏舟,王勤辉,岑可法.循环流化床锅炉技术的现状及发展前景[J].动力工程,2004,24(6):761-767. 被引量:97
  • 2GHANEM M,AZAM N,BONIFACE M,et al.Grid-enabled workflows for industrial product design[EB/OL].(2009-01-01)[2009-03-03].http://www.gria.org/downloads/publications/Grid-enabled-workflows,pdf.
  • 3WUJEK B,KOCH P N,CHIANG W S.A workflow paradigm for flexible design process configuration in FIPER[C]//Proceedings of the 8th Symposium on Multidisciplinary Analysis and Optimization.Reston,Va.,USA.AIAA,2000:6-8(AIAA-2000-4868).
  • 4GUENOV M D,LIBISH,TANG Dunbing,et al.Computational design process modelling[EB/OL].[2009-03-15].http://www.vivaceproject.com/content/advanced/sp3-icas-2006-gue nov.pdf.
  • 5FR éD éRIC F,PASCAL G,VAN THOMAS N,et al.An engineering data management framework for virtual aircraft[EB/OL].(2009-01-05)[2009-02-11].http://www.mscsoftware.com/events/vpd2006/na/presentations/tech_papers/46.pdf,2009.
  • 6GIANNINI F,MONTI M,BIONDI D,et al.A modelling tool for the management of product data in a co-design environment[J].Computer-Aided Design,2002,34(14).1063-1073.
  • 7LEONG K K,YU K M,LEE W B.A security model for distributed product data management system[J].Computer in Industry,2003,50(2),179-193.
  • 8LIU Y.CROSSLAND R,BROWN D,et al.A best practice advice system to support automotive engineering analysis processes[J].Engineering with Computers,2004,19(4):271-283.
  • 9SELLINI F,CLOONAN J,CARVER E,et al.Working with the supply chain:understanding barriers and opportunities to knowledge sharing and re-use[EB/OL].[2009-01-03].http:// www.vivaceproject.com/content/aircraft/spl_% 20i cl mme_ ob_sellini.pdf.
  • 10Altair Engineering,Inc.The enterprise solution for product innovation[EB/OL].(2009-02-06)[2009-04-06].http:// www.altairhyperworks.com/pdfs/product_brochures/HW_ ProcessManager_Web.pdf.

二级参考文献14

  • 1Reh L.Challenges of circulating fluid-bed reactors in energy and raw materials industries [J].Chemical Engineering Science,1999 ( 59 ):5359 ~ 5368.
  • 2Nowak W.Clean coal fluidized-bed technology in poland [J].Applied Energy,2003(74):405~413.
  • 3Lee JM,KimJS,KimSM,et al.Combustion and fragmentation characteristics of korean anthracite[C].Sixteenth International Conference on Fluidized Bed Combustion,Nevada:USA,2001:889~898.
  • 4Tian Z P,Chen J.Zhao G,et al.Status and development of CFB boilers in China [C].Proceeding of The 7th International Conference on Circulating Fluidized Beds,May 2002,Canada:821~827.
  • 5Rajaram S.Next generation CFBC [J].Chemical Engineering Science,1999(54):5565~5571.
  • 6Skowyra R S,et al.Design of super critical sliding pressure circulating fluidized-bed with vertical water walls[C].International conference on FBC-ASME,1995.
  • 7方梦祥,骆仲泱,王勤辉,李绚天,施正伦,程乐鸣,陈冠益,倪明江,岑可法.循环流化床热、电、气三联产装置的开发和应用前景分析[J].动力工程,1997,17(4):21-27. 被引量:33
  • 8王树荣,方梦祥,骆仲泱,李绚天,倪明江,岑可法.循环流化床锅炉大型化关键设计问题研究[J].热力发电,2000,29(4):2-5. 被引量:8
  • 9王文龙,施正伦,骆仲泱,岑可法.流化床脱硫灰渣的特性与综合利用研究[J].电站系统工程,2002,18(5):19-21. 被引量:31
  • 10刘静,王勤辉,骆仲泱,岑可法.600MWe超临界循环流化床锅炉的设计研究[J].动力工程,2003,23(1):2179-2184. 被引量:40

共引文献96

同被引文献3

  • 1陈菁菁,姜源.TOMCAT原理与JAVA WEB系统开发[M].清华大学出版社.2009.
  • 2陈刚.ECLIPSE从入门到精通(第2版)[M].北京:清华大学出版社.2001.
  • 3MSC Software Corporatio.MSC SimManager http://www.mscsoftware.com/Products/Virtual-Build-And-Test-Management/SimManager.aspx.

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