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新疆油田地面建设工程项目可视化协同平台的设计与实现

Design and Realization of Visualization Collaboration Platform in Xinjiang Oilfield Surface Construction Projects

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【作者】 石峰张德君王利君王传平

【Author】 SHI Feng;ZHANG Dejun;WANG Lijun;WANG Chuanping;Data Company of Xinjiang Oilfield Company,CNPC;No.1 Gas Production Plant of XinJiang Oilfield Company,CNPC;

【机构】 中国石油新疆油田分公司数据公司中国石油新疆油田分公司采气一厂

【摘要】 油田地面建设工程是一个多方参与、多专业工作的过程,协同工作对项目建设的效率与质量意义重大,然而由于传统CAD平面设计的局限性,协同工作的效率低下。如何打破传统基建期各专业孤立的局面,为我国油田的建设工作提供可视化的协同平台,是目前数字油田和智慧油田实现的重点与难点。新疆油田综合应用信息技术、可视化技术、BIM、eZWalker技术等,设计并实现了一种适合油田建设项目过程中多专业可视化协同工作平台。该平台采用轻量级WEB服务架构,提供海量元件级管理、三维模型展示与管理、任务协同及文档管理等功能,在新疆油田地面建设工程中获得良好应用效果,在满足新疆油田建设多专业高效协同作业需要的同时,也是完善我国油田建设可视化协同应用的重要过程。

【Abstract】 Oilfield surface construction project is a process with multi-participations and multi-specialties. Collaboration has great significance to the efficiency and quality of project construction. However,due to the limitation of traditional CAD graphic design,the efficiency of collaborative work is low.How to break the isolation of specialties in traditional capital construction period and to provide a visual collaborative platform for the construction of Xinjiang Oilfield and China’s other oilfields is the key and difficult point in realizing digital oilfield and intelligent oilfield at present. A multi-specialties visualization collaboration platform suitable for oilfield construction projects is designed and realized by using information technology,visualization technology,BIM,eZWalker technology and so on. The platform adopts lightweight WEB service architecture,providing functions such as mass component-level management,three-dimensional model display and management,task collaboration and document management. It has a good application effect in the surface construction project of Xinjiang Oilfield. It meet the needs of multi-specialty and high-efficiency collaborate operation in Xinjiang oilfield construction,and it also an important process to improve the visualization and collaborative application of oilfield construction in China.

  • 【文献出处】 油气田地面工程 ,Oil-Gas Field Surface Engineering , 编辑部邮箱 ,2019年06期
  • 【分类号】TE41
  • 【被引频次】2
  • 【下载频次】100
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