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Offshore booster station jacket construction method based on BIM technology
The invention discloses an offshore booster station jacket construction method based on a BIM (Building Information Modeling) technology, which comprises the following steps: step 1, modeling by adopting the BIM technology, and carrying out 3D (Three-Dimensional) simulation pre-assembly; step 2, completing the preparation of each steel structure rod piece according to the construction drawing; 3, sheet body assembling: defining a surface F, a surface 2, a surface 4, a surface B and a surface D, and independently constructing the anti-caisson and the pile shoe; the jacket is assembled according to the upper section and the lower section, the final assembly sequence of the lower section is F face-B face-2 face-4 face-D face, and the final assembly sequence of the upper section is B face-2 face-4 face-D face; fourthly, overall folding is conducted on a transport ship, specifically, a jacket transport tool is installed, four anti-caissons are placed in place, a jacket lower structure is hoisted, four pile shoes are hoisted in sequence, and an upper structure is hoisted; and 5, dispatching: hoisting the jacket of the booster station in place by adopting a large floating crane after arriving at an offshore installation site. The method has the advantages of being low in construction cost and efficient in construction.
本发明公开了一种基于BIM技术的海上升压站导管架建造方法,包括以下步骤:步骤一、采用BIM技术进行建模,进行3D模拟预拼装;步骤二、根据施工图完成各钢结构杆件的制备;步骤三、片体组装:定义为F面、2面、4面、B面和D面,防沉箱与桩靴单独建造;步骤三、场外分段组装:导管架按上下段分别组装,下段总装顺序为:F面‑B面‑2面‑4面‑D面,上段总装顺序为:B面‑2面‑4面‑D面;步骤四、运输船上整体合拢:安装导管架运输工装,就位4个防沉箱,吊装导管架下部结构,依次吊装4个桩靴,吊装上部结构;步骤五、发运:升压站导管架到达海上安装地点后采用大型浮吊船吊装就位。本发明的优点在于:建造成本低、建造高效。
Offshore booster station jacket construction method based on BIM technology
The invention discloses an offshore booster station jacket construction method based on a BIM (Building Information Modeling) technology, which comprises the following steps: step 1, modeling by adopting the BIM technology, and carrying out 3D (Three-Dimensional) simulation pre-assembly; step 2, completing the preparation of each steel structure rod piece according to the construction drawing; 3, sheet body assembling: defining a surface F, a surface 2, a surface 4, a surface B and a surface D, and independently constructing the anti-caisson and the pile shoe; the jacket is assembled according to the upper section and the lower section, the final assembly sequence of the lower section is F face-B face-2 face-4 face-D face, and the final assembly sequence of the upper section is B face-2 face-4 face-D face; fourthly, overall folding is conducted on a transport ship, specifically, a jacket transport tool is installed, four anti-caissons are placed in place, a jacket lower structure is hoisted, four pile shoes are hoisted in sequence, and an upper structure is hoisted; and 5, dispatching: hoisting the jacket of the booster station in place by adopting a large floating crane after arriving at an offshore installation site. The method has the advantages of being low in construction cost and efficient in construction.
本发明公开了一种基于BIM技术的海上升压站导管架建造方法,包括以下步骤:步骤一、采用BIM技术进行建模,进行3D模拟预拼装;步骤二、根据施工图完成各钢结构杆件的制备;步骤三、片体组装:定义为F面、2面、4面、B面和D面,防沉箱与桩靴单独建造;步骤三、场外分段组装:导管架按上下段分别组装,下段总装顺序为:F面‑B面‑2面‑4面‑D面,上段总装顺序为:B面‑2面‑4面‑D面;步骤四、运输船上整体合拢:安装导管架运输工装,就位4个防沉箱,吊装导管架下部结构,依次吊装4个桩靴,吊装上部结构;步骤五、发运:升压站导管架到达海上安装地点后采用大型浮吊船吊装就位。本发明的优点在于:建造成本低、建造高效。
Offshore booster station jacket construction method based on BIM technology
一种基于BIM技术的海上升压站导管架建造方法
XU CHUANGJIAN (Autor:in) / SHAN SHUANGBO (Autor:in) / ZHENG BING (Autor:in) / ZHANG XIAOFAN (Autor:in)
09.05.2023
Patent
Elektronische Ressource
Chinesisch
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