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Intelligent deviation rectifying open caisson construction method and system
The invention relates to the technical field of open caisson construction, in particular to an intelligent deviation rectifying open caisson construction method and system. Comprising the steps that multiple construction sub-areas are established according to parameters of a to-be-constructed open caisson, and a cutting plan is generated according to the parameters of the to-be-constructed open caisson Setting water jet cutting parameters of each construction sub-area and working parameters of a mud pumping pipe according to the cutting plan; and open caisson state parameters are obtained according to the preset feedback time node, and whether the water jet cutting parameters are corrected or not is judged according to the open caisson state parameters. A plurality of construction sub-areas are established according to equipment parameters of the open caisson, a water knife sub-module is arranged in each construction sub-area, working parameters between the water knife sub-modules are adjusted through a central control unit, soil bodies in the construction sub-areas are cut, automatic sinking of the open caisson is achieved in cooperation with a mud pumping pipe, and the construction quality of the open caisson is improved; and the construction cost of the open caisson is reduced. And according to the sinking posture of the open caisson, the deflection state of the open caisson is judged, a corresponding correction instruction is set, and the construction precision of the open caisson is guaranteed.
本申请涉及沉井施工技术领域,特别是涉及一种智能纠偏的沉井施工方法及系统。包括:根据待施工沉井参数建立多个施工子区域,并根据待施工沉井参数生成切割计划;根据切割计划设定各个施工子区域的水刀切割参数和抽泥管的工作参数;根据预设反馈时间节点获取沉井状态参数,并根据沉井状态参数判断是否修正水刀切割参数。根据沉井的设备参数建立多个施工子区域,在每个施工子区域设置水刀子模块,通过中控单元调节各个水刀子模块之间的工作参数,对各个施工子区域内的土体进行切割,配合抽泥管实现沉井的自动下沉,提高沉井的施工质量,降低沉井的施工成本。根据沉井的下沉姿态,判断沉井的偏斜状态,设定对应的修正指令,保证沉井的施工精度。
Intelligent deviation rectifying open caisson construction method and system
The invention relates to the technical field of open caisson construction, in particular to an intelligent deviation rectifying open caisson construction method and system. Comprising the steps that multiple construction sub-areas are established according to parameters of a to-be-constructed open caisson, and a cutting plan is generated according to the parameters of the to-be-constructed open caisson Setting water jet cutting parameters of each construction sub-area and working parameters of a mud pumping pipe according to the cutting plan; and open caisson state parameters are obtained according to the preset feedback time node, and whether the water jet cutting parameters are corrected or not is judged according to the open caisson state parameters. A plurality of construction sub-areas are established according to equipment parameters of the open caisson, a water knife sub-module is arranged in each construction sub-area, working parameters between the water knife sub-modules are adjusted through a central control unit, soil bodies in the construction sub-areas are cut, automatic sinking of the open caisson is achieved in cooperation with a mud pumping pipe, and the construction quality of the open caisson is improved; and the construction cost of the open caisson is reduced. And according to the sinking posture of the open caisson, the deflection state of the open caisson is judged, a corresponding correction instruction is set, and the construction precision of the open caisson is guaranteed.
本申请涉及沉井施工技术领域,特别是涉及一种智能纠偏的沉井施工方法及系统。包括:根据待施工沉井参数建立多个施工子区域,并根据待施工沉井参数生成切割计划;根据切割计划设定各个施工子区域的水刀切割参数和抽泥管的工作参数;根据预设反馈时间节点获取沉井状态参数,并根据沉井状态参数判断是否修正水刀切割参数。根据沉井的设备参数建立多个施工子区域,在每个施工子区域设置水刀子模块,通过中控单元调节各个水刀子模块之间的工作参数,对各个施工子区域内的土体进行切割,配合抽泥管实现沉井的自动下沉,提高沉井的施工质量,降低沉井的施工成本。根据沉井的下沉姿态,判断沉井的偏斜状态,设定对应的修正指令,保证沉井的施工精度。
Intelligent deviation rectifying open caisson construction method and system
一种智能纠偏的沉井施工方法及系统
ZHANG YUEGANG (author) / PAN DONG (author) / HE LIAN (author) / LUO HAILONG (author) / SHEN LIANGSHUAI (author) / JIANG LIHONG (author) / CHEN LIUZHENG (author) / HUANG TAO (author) / XIA JINPING (author)
2024-10-01
Patent
Electronic Resource
Chinese
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