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Multi-stage energy dissipation type drainage energy dissipation well
The invention relates to a multistage energy dissipation type drainage energy dissipation well which comprises a well cavity, a baffle mechanism, a sliding rod transmission mechanism, a cover plate driving mechanism, a cover plate, a gear driving mechanism, a vertical stirring mechanism and a horizontal stirring mechanism. The interior of the well cavity is divided into a baffle energy dissipation chamber, a water cushion energy dissipation chamber, a transition chamber, a stirring energy dissipation chamber, a power chamber and a water outlet chamber; the upper portion of the side wall, away from the water outlet chamber, of the baffle energy dissipation chamber communicates with a water inlet pipe, and the bottom of the side wall, away from the transition chamber, of the water outlet chamber communicates with a water outlet pipe. Through a baffle mechanism, energy dissipation is conducted when water flow entering a baffle energy dissipation chamber falls, meanwhile, the baffle mechanism drives a sliding rod transmission mechanism to move downwards to sequentially drive a gear driving mechanism, a vertical stirring mechanism and a horizontal stirring mechanism to rotate, and stirring energy dissipation can be conducted on water flow in a water cushion energy dissipation chamber and a stirring energy dissipation chamber; the cover plate driving mechanism can drive the cover plates to dynamically switch the first-stage energy dissipation mode, the second-stage energy dissipation mode or the third-stage energy dissipation mode according to the water level change, and the energy dissipation efficiency is improved.
本发明涉及一种多级消能式排水消能井,包括井腔、挡板机构、滑杆传动机构、盖板驱动机构、盖板、齿轮驱动机构、垂直搅拌机构和水平搅拌机构,井腔内分隔成挡板消能室、水垫消能室、过渡室、搅拌消能室、动力室和出水室,挡板消能室远离出水室一侧侧壁的上部连通设置有进水管,出水室远离过渡室一侧侧壁的底部连通设置有出水管。通过挡板机构,对进入挡板消能室的水流跌落时进行消能,同时挡板机构带动滑杆传动机构向下运动依次驱动齿轮驱动机构、垂直搅拌机构和水平搅拌机构转动,可对水垫消能室和搅拌消能室内的水流进行搅拌消能,同时,盖板驱动机构可根据水位变化,驱动各盖板动态切换一级消能、二级消能或三级消能的模式,提升了消能效率。
Multi-stage energy dissipation type drainage energy dissipation well
The invention relates to a multistage energy dissipation type drainage energy dissipation well which comprises a well cavity, a baffle mechanism, a sliding rod transmission mechanism, a cover plate driving mechanism, a cover plate, a gear driving mechanism, a vertical stirring mechanism and a horizontal stirring mechanism. The interior of the well cavity is divided into a baffle energy dissipation chamber, a water cushion energy dissipation chamber, a transition chamber, a stirring energy dissipation chamber, a power chamber and a water outlet chamber; the upper portion of the side wall, away from the water outlet chamber, of the baffle energy dissipation chamber communicates with a water inlet pipe, and the bottom of the side wall, away from the transition chamber, of the water outlet chamber communicates with a water outlet pipe. Through a baffle mechanism, energy dissipation is conducted when water flow entering a baffle energy dissipation chamber falls, meanwhile, the baffle mechanism drives a sliding rod transmission mechanism to move downwards to sequentially drive a gear driving mechanism, a vertical stirring mechanism and a horizontal stirring mechanism to rotate, and stirring energy dissipation can be conducted on water flow in a water cushion energy dissipation chamber and a stirring energy dissipation chamber; the cover plate driving mechanism can drive the cover plates to dynamically switch the first-stage energy dissipation mode, the second-stage energy dissipation mode or the third-stage energy dissipation mode according to the water level change, and the energy dissipation efficiency is improved.
本发明涉及一种多级消能式排水消能井,包括井腔、挡板机构、滑杆传动机构、盖板驱动机构、盖板、齿轮驱动机构、垂直搅拌机构和水平搅拌机构,井腔内分隔成挡板消能室、水垫消能室、过渡室、搅拌消能室、动力室和出水室,挡板消能室远离出水室一侧侧壁的上部连通设置有进水管,出水室远离过渡室一侧侧壁的底部连通设置有出水管。通过挡板机构,对进入挡板消能室的水流跌落时进行消能,同时挡板机构带动滑杆传动机构向下运动依次驱动齿轮驱动机构、垂直搅拌机构和水平搅拌机构转动,可对水垫消能室和搅拌消能室内的水流进行搅拌消能,同时,盖板驱动机构可根据水位变化,驱动各盖板动态切换一级消能、二级消能或三级消能的模式,提升了消能效率。
Multi-stage energy dissipation type drainage energy dissipation well
一种多级消能式排水消能井
LI ER (author) / ZENG XIANGYING (author)
2023-06-30
Patent
Electronic Resource
Chinese
IPC:
E03F
SEWERS
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