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Integrated construction method for fast building of super high-rise piping shaft based on BIM (Building Information Modeling)
The invention relates to the technical field of piping shaft integration, in particular to an integrated construction method for fast building of a super high-rise piping shaft based on BIM, and the integrated construction method for fast building of the super high-rise piping shaft comprises a module frame, a plurality of splicing pipelines and a plurality of connection compensation assemblies, and the splicing pipelines are vertically arranged in the module frame through hoops correspondingly; the method comprises the following steps: carrying out stress analysis through a BIM drawing, determining a channel steel model selected by a pipeline well frame and a fixed bolt specification model, determining all data information in a pipeline well through a BIM technology, making a three-dimensional model, and then carrying out factory processing and manufacturing according to a three-dimensional model drawing. And the construction adaptability is improved, the construction efficiency is high, the construction period is shortened, the operation is simple, the labor loss is reduced, disassembly turnover and repeated utilization can be carried out, and the environment-friendly and economic value is high by carrying out assembly type installation according to BIM arrangement, technical disclosure and the like by constructors, and connecting compensation assemblies in a matched mode. The construction adaptability is improved, the construction efficiency is high, the construction period is shortened, and the operation is simple.
本发明公开涉及管道井集成技术领域,具体为一种基于BIM的超高层管道井快速建造的集成施工方法,超高层管道井快速建造的集成施工方法包括模块架、若干拼接管道和若干连接补偿组件,若干拼接管道分别通过抱箍竖直设于模块架内,具有以下步骤,通过BIM图纸进行受力分析,确定管道井框架选用的槽钢型号及固定螺栓规格型号,通过BIM技术,确定管井内所有数据信息并制作三维模型,然后根据三维模型图纸,进行工厂的加工制作,并运输至现场有施工人员按照BIM排布、技术交底等进行装配式安装,配合连接补偿组件,提高施工的适应性,施工效率高,减少施工周期,操作简单,减少人工的损耗,可进行拆卸周转以及重复利用,环保以及经济价值高。
Integrated construction method for fast building of super high-rise piping shaft based on BIM (Building Information Modeling)
The invention relates to the technical field of piping shaft integration, in particular to an integrated construction method for fast building of a super high-rise piping shaft based on BIM, and the integrated construction method for fast building of the super high-rise piping shaft comprises a module frame, a plurality of splicing pipelines and a plurality of connection compensation assemblies, and the splicing pipelines are vertically arranged in the module frame through hoops correspondingly; the method comprises the following steps: carrying out stress analysis through a BIM drawing, determining a channel steel model selected by a pipeline well frame and a fixed bolt specification model, determining all data information in a pipeline well through a BIM technology, making a three-dimensional model, and then carrying out factory processing and manufacturing according to a three-dimensional model drawing. And the construction adaptability is improved, the construction efficiency is high, the construction period is shortened, the operation is simple, the labor loss is reduced, disassembly turnover and repeated utilization can be carried out, and the environment-friendly and economic value is high by carrying out assembly type installation according to BIM arrangement, technical disclosure and the like by constructors, and connecting compensation assemblies in a matched mode. The construction adaptability is improved, the construction efficiency is high, the construction period is shortened, and the operation is simple.
本发明公开涉及管道井集成技术领域,具体为一种基于BIM的超高层管道井快速建造的集成施工方法,超高层管道井快速建造的集成施工方法包括模块架、若干拼接管道和若干连接补偿组件,若干拼接管道分别通过抱箍竖直设于模块架内,具有以下步骤,通过BIM图纸进行受力分析,确定管道井框架选用的槽钢型号及固定螺栓规格型号,通过BIM技术,确定管井内所有数据信息并制作三维模型,然后根据三维模型图纸,进行工厂的加工制作,并运输至现场有施工人员按照BIM排布、技术交底等进行装配式安装,配合连接补偿组件,提高施工的适应性,施工效率高,减少施工周期,操作简单,减少人工的损耗,可进行拆卸周转以及重复利用,环保以及经济价值高。
Integrated construction method for fast building of super high-rise piping shaft based on BIM (Building Information Modeling)
一种基于BIM的超高层管道井快速建造的集成施工方法
LI LIANGLIANG (Autor:in) / ZHEN SHEN (Autor:in) / LI SHUAI (Autor:in)
24.10.2023
Patent
Elektronische Ressource
Chinesisch
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