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Roof steel structure and air duct synchronous sliding construction method
The invention relates to the technical field of supporting building facility construction. The method comprises the following construction steps that modeling is conducted on a whole system through BIM software, and the structure and position of an air duct are at least determined and at least comprise the size parameter and position information of the air duct and the structure and position information of a steel structure support; construction materials and devices are prefabricated according to data of a BIM model, and at least prefabrication machining of an air duct support and prefabrication machining of the steel structure support are included; a sliding rail and a sliding assembly platform are installed; the steel structure support is assembled, and ground assembling and hoisting of the steel structure support are included; the air duct support is installed, and the air duct is hoisted according to the air duct position information of the BIM model; and overall sliding is conducted. The steel structure support and the air duct are installed in a span-separated manner, each span is installed on the sliding assembly platform, then the steel structure support and the air duct overall slide to the sliding rail, the hoisting difficulty of large-span roof operation is avoided, and the installation efficiency and installation precision are improved through an information management system of the BIM.
本发明涉及配套建筑设施施工的技术领域。包括以下施工步骤:通过BIM软件对整个系统进行建模,至少确定风管结构和位置,至少包括所述风管的尺寸参数和位置信息、钢结构支架的结构和位置信息;依据BIM模型的数据进行预制施工材料和装置,至少包括风管支架的预制加工和所述钢结构支架的预制加工;安装滑移轨道及滑移组装平台;拼装所述钢结构支架,包括所述钢结构支架的地面拼装和吊装;安装所述风管支架,并依据所述BIM模型的风管位置信息进行所述风管的吊装;整体滑移。钢结构支架和风管分跨进行安装,每一跨都在滑移组装平台上安装,然后在整体滑移到滑移轨道,避免了大跨度屋顶作业的吊装难度,利用BIM的信息管理系统提高了安装效率和安装精度。
Roof steel structure and air duct synchronous sliding construction method
The invention relates to the technical field of supporting building facility construction. The method comprises the following construction steps that modeling is conducted on a whole system through BIM software, and the structure and position of an air duct are at least determined and at least comprise the size parameter and position information of the air duct and the structure and position information of a steel structure support; construction materials and devices are prefabricated according to data of a BIM model, and at least prefabrication machining of an air duct support and prefabrication machining of the steel structure support are included; a sliding rail and a sliding assembly platform are installed; the steel structure support is assembled, and ground assembling and hoisting of the steel structure support are included; the air duct support is installed, and the air duct is hoisted according to the air duct position information of the BIM model; and overall sliding is conducted. The steel structure support and the air duct are installed in a span-separated manner, each span is installed on the sliding assembly platform, then the steel structure support and the air duct overall slide to the sliding rail, the hoisting difficulty of large-span roof operation is avoided, and the installation efficiency and installation precision are improved through an information management system of the BIM.
本发明涉及配套建筑设施施工的技术领域。包括以下施工步骤:通过BIM软件对整个系统进行建模,至少确定风管结构和位置,至少包括所述风管的尺寸参数和位置信息、钢结构支架的结构和位置信息;依据BIM模型的数据进行预制施工材料和装置,至少包括风管支架的预制加工和所述钢结构支架的预制加工;安装滑移轨道及滑移组装平台;拼装所述钢结构支架,包括所述钢结构支架的地面拼装和吊装;安装所述风管支架,并依据所述BIM模型的风管位置信息进行所述风管的吊装;整体滑移。钢结构支架和风管分跨进行安装,每一跨都在滑移组装平台上安装,然后在整体滑移到滑移轨道,避免了大跨度屋顶作业的吊装难度,利用BIM的信息管理系统提高了安装效率和安装精度。
Roof steel structure and air duct synchronous sliding construction method
一种屋盖钢结构与风管同步滑移施工方法
AN CHAO (Autor:in) / ZHANG XIAOTIAN (Autor:in) / LI SHAOHUA (Autor:in) / YANG BO (Autor:in) / SHENG QIANG (Autor:in) / LI JIE (Autor:in) / WANG HONG (Autor:in) / SHEN QINGYUN (Autor:in)
29.10.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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