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Integral door frame structure with built-in reverse jacking type hydraulic oil cylinder well and construction method
The invention relates to an integral door frame structure of a built-in reverse jacking type hydraulic oil cylinder well and a construction method, and belongs to the technical field of water gate integral door frame structures, the integral door frame structure comprises two side pier door grooves, a plurality of side pier door grooves and a plurality of side pier door grooves, the number of the middle pier gate grooves is one less than the number of the gate holes, and the middle pier gate grooves are mutually symmetrical; the number of the bottom sills is the same as the number of the lintels and the number of the gate holes, and the side pier gate grooves and the middle pier gate grooves are fixedly connected with the bottom sills; the main reverse rails of the gate grooves are integrated into a whole, the gate grooves of the adjacent runners are also integrated into a whole, the hydraulic opening and closing devices are arranged in the gate grooves, the overall performance is good, the door frame installation process can be effectively simplified, the door frame hoisting frequency is reduced, construction is convenient and fast, the construction speed is high, the gate pier occupied area is reduced, and the water gate overflowing capacity is improved; the height of the building on the gate can be reduced, favorable conditions are created for the modeling design of the building on the gate, and the advantage is particularly prominent for a porous gate.
本发明涉及一种内置反顶式液压油缸井的整体门框结构及施工方法,属于水闸整体式门框结构技术领域,所述整体门框结构包括:边墩门槽,其数量为两个,所述边墩门槽之间相互对称;中墩门槽,其数量为闸门孔数减一,所述中墩门槽之间相互对称;底槛,其数量与门楣数量和闸门孔数相同,所述边墩门槽和中墩门槽与所述底槛固定连接;本发明将门槽的主反轨集成为一个整体,将相邻流道的门槽也集成为一体,并且在门槽中内置液压启闭装置,整体性能好,它可以有效简化门框安装过程,减少门框吊装次数,施工便捷,施工速度快,减少门墩占地面积,提高水闸过流能力,可减少闸上建筑的高度,为闸上建筑造型设计创造有利条件,这一优势对多孔闸门尤为突出。
Integral door frame structure with built-in reverse jacking type hydraulic oil cylinder well and construction method
The invention relates to an integral door frame structure of a built-in reverse jacking type hydraulic oil cylinder well and a construction method, and belongs to the technical field of water gate integral door frame structures, the integral door frame structure comprises two side pier door grooves, a plurality of side pier door grooves and a plurality of side pier door grooves, the number of the middle pier gate grooves is one less than the number of the gate holes, and the middle pier gate grooves are mutually symmetrical; the number of the bottom sills is the same as the number of the lintels and the number of the gate holes, and the side pier gate grooves and the middle pier gate grooves are fixedly connected with the bottom sills; the main reverse rails of the gate grooves are integrated into a whole, the gate grooves of the adjacent runners are also integrated into a whole, the hydraulic opening and closing devices are arranged in the gate grooves, the overall performance is good, the door frame installation process can be effectively simplified, the door frame hoisting frequency is reduced, construction is convenient and fast, the construction speed is high, the gate pier occupied area is reduced, and the water gate overflowing capacity is improved; the height of the building on the gate can be reduced, favorable conditions are created for the modeling design of the building on the gate, and the advantage is particularly prominent for a porous gate.
本发明涉及一种内置反顶式液压油缸井的整体门框结构及施工方法,属于水闸整体式门框结构技术领域,所述整体门框结构包括:边墩门槽,其数量为两个,所述边墩门槽之间相互对称;中墩门槽,其数量为闸门孔数减一,所述中墩门槽之间相互对称;底槛,其数量与门楣数量和闸门孔数相同,所述边墩门槽和中墩门槽与所述底槛固定连接;本发明将门槽的主反轨集成为一个整体,将相邻流道的门槽也集成为一体,并且在门槽中内置液压启闭装置,整体性能好,它可以有效简化门框安装过程,减少门框吊装次数,施工便捷,施工速度快,减少门墩占地面积,提高水闸过流能力,可减少闸上建筑的高度,为闸上建筑造型设计创造有利条件,这一优势对多孔闸门尤为突出。
Integral door frame structure with built-in reverse jacking type hydraulic oil cylinder well and construction method
一种内置反顶式液压油缸井的整体门框结构及施工方法
WANG XIAOJIA (Autor:in) / XU YI (Autor:in) / ZHANG ZAIPENG (Autor:in) / QIAO JINGYI (Autor:in) / CHEN QIUYUN (Autor:in) / LIU HEYUN (Autor:in) / XU YAOJIE (Autor:in) / ZHANG YUNZHI (Autor:in) / WU FENG (Autor:in) / SHEN HENG (Autor:in)
03.11.2023
Patent
Elektronische Ressource
Chinesisch
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