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Efficient and energy-saving layered water taking equipment convenient to overhaul
The invention discloses efficient and energy-saving layered water taking equipment convenient to overhaul, and relates to the technical field of water conservancy and hydropower engineering, the efficient and energy-saving layered water taking equipment comprises a door frame assembly, a water seal assembly, a pushing assembly, a driving assembly and a working assembly, and the frame assembly comprises an upper cross beam, a box type side column and a lower cross beam which are connected end to end; the water seal assembly is rotationally arranged in the containing space. The pushing assembly is arranged in the box-shaped side column and is connected with the water seal assembly; the driving assembly is arranged in the box type side column; the working assembly is arranged on the water seal assembly. Two driving assemblies are adopted to drive one or more water sealing assemblies at will through the pushing assembly and the working assembly, layered water taking equipment for taking water bodies with different elevations is completed, and on the premise that the using function is achieved, more efficient and energy-saving effects are achieved; one door frame assembly and a plurality of water sealing assemblies form a layered water taking structure, the layered water taking structure is installed in a door groove of one water taking hole, the layered water taking equipment is integrally lifted or lowered by adopting a door machine or a trolley arranged on a dam body platform, and maintenance is convenient.
本发明公开了高效节能检修方便的分层取水设备,涉及水利水电工程技术领域,包括门框组件、水封组件、推动组件、驱动组件、工作组件,框组件包括相互之间首尾连接的上横梁、箱型边柱、下横梁;水封组件转动设置在容纳空间内;推动组件设置在箱型边柱内与水封组件连接;驱动组件装设于箱型边柱内;工作组件装设于水封组件上。采用两组驱动组件通过推动组件及工作组件,任意驱动一个或多个封水组件,完成取不同高程水体的分层取水设备,实现使用功能的前提下,更加高效节能;一个门框组件加数个封水组件构成一个分层取水结构,安装在一个取水孔口的门槽中,采用设置于坝体平台的门机或台车,将分层取水设备整体提升或下放,便于检修。
Efficient and energy-saving layered water taking equipment convenient to overhaul
The invention discloses efficient and energy-saving layered water taking equipment convenient to overhaul, and relates to the technical field of water conservancy and hydropower engineering, the efficient and energy-saving layered water taking equipment comprises a door frame assembly, a water seal assembly, a pushing assembly, a driving assembly and a working assembly, and the frame assembly comprises an upper cross beam, a box type side column and a lower cross beam which are connected end to end; the water seal assembly is rotationally arranged in the containing space. The pushing assembly is arranged in the box-shaped side column and is connected with the water seal assembly; the driving assembly is arranged in the box type side column; the working assembly is arranged on the water seal assembly. Two driving assemblies are adopted to drive one or more water sealing assemblies at will through the pushing assembly and the working assembly, layered water taking equipment for taking water bodies with different elevations is completed, and on the premise that the using function is achieved, more efficient and energy-saving effects are achieved; one door frame assembly and a plurality of water sealing assemblies form a layered water taking structure, the layered water taking structure is installed in a door groove of one water taking hole, the layered water taking equipment is integrally lifted or lowered by adopting a door machine or a trolley arranged on a dam body platform, and maintenance is convenient.
本发明公开了高效节能检修方便的分层取水设备,涉及水利水电工程技术领域,包括门框组件、水封组件、推动组件、驱动组件、工作组件,框组件包括相互之间首尾连接的上横梁、箱型边柱、下横梁;水封组件转动设置在容纳空间内;推动组件设置在箱型边柱内与水封组件连接;驱动组件装设于箱型边柱内;工作组件装设于水封组件上。采用两组驱动组件通过推动组件及工作组件,任意驱动一个或多个封水组件,完成取不同高程水体的分层取水设备,实现使用功能的前提下,更加高效节能;一个门框组件加数个封水组件构成一个分层取水结构,安装在一个取水孔口的门槽中,采用设置于坝体平台的门机或台车,将分层取水设备整体提升或下放,便于检修。
Efficient and energy-saving layered water taking equipment convenient to overhaul
高效节能检修方便的分层取水设备
CHEN QI (Autor:in) / WU DEXIN (Autor:in) / LI BIN (Autor:in) / YU JUNYANG (Autor:in) / CUI ZHI (Autor:in) / MA RENCHAO (Autor:in) / SHENG YONGZHEN (Autor:in) / LIAO ZHAOBANG (Autor:in) / CAO HUIYING (Autor:in) / DING BO (Autor:in)
18.07.2023
Patent
Elektronische Ressource
Chinesisch
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