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GIS+BIM的水利工程两层级架构智能建造系统研究
作者姓名:孔兰  蔡一坚  王东阳  张帅  林翰文
作者单位:海南省水利电力集团有限公司,海南 海口 571126 ;中水珠江规划勘测设计有限公司,广东 广州 510610;中国电力建设集团华东勘测设计研究院有限公司,浙江 杭州 311122
摘    要:传统水利工程通常存在管理模式复杂、施工信息繁多、数据收集困难、可视化程度低等问题,研究在复杂管理模式下的信息化的工程管理手段,可有效提高水利工程管理的效率和水平,实现工程精细化管理。以海南省重大水利工程智能建造系统为例,提出 GIS + BIM 的水利工程两层级(集团级和项目级)架构的工程数字化管理系统的管理模式,可通过 PC 端和移动端 App 操作,结合工程建设期内各建设、监理、施工、设计及其他参建单位的工程建设管理需求,实现工程进度、质量、投资、安全等全要素的智能化管控。实际工程应用表明:该模式在复杂管理组织模式下能较快适应现场实际需求,发挥作用,为管理模式复杂的大型水利工程项目群施工期的建设管理提供参考。

关 键 词:水利工程  两层级架构  智能建造  GIS  BIM  数字化  精细化管理  项目群
收稿时间:2021/2/8 0:00:00
修稿时间:2021/9/3 0:00:00

Research of Hydraulic Engineering Intelligent Building System including two layers based on GIS+BIM
Authors:KONG Lan  CAI Yijian  WANG Dongyang  ZHANG Shuai  LIN Hanwen
Abstract:Traditional water conservancy engineering usually has the problems of complex management mode, numerous construction information, difficult data collection, low visualization degree and so on. The study of the information engineering management means under complex management mode can effectively improve the effificiency and level of water conservancy project management, and realize project fine management. Taking the intelligent construction system of Hainan Province as an example, this paper puts forward the management mode of two-level framework (group level and project level) engineering digital management system based on GIS + BIM of water conservancy engineering. The system can be operated by PC and mobile App, combined with the construction supervision, construction design and other construction management needs of the construction units during the construction period, to achieve intelligent management and control of the whole elements of project progress, quality, investment, safety and so on. Practical engineering application shows that the model can adapt to actual needs on site quickly under the complex management and organization model, and provide reference for the construction and management of large-scale water conservancy engineering under complex management model during construction period.
Keywords:Hydraulic engineering  digitization  fine management  intelligent construction  project clusters  two-level management model  GIS+BIM  project groupsGIS+BIM
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