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Energy-saving water supply system utilizing time-phased pipe network switching
The invention provides an energy-saving water supply system utilizing time-phased pipe network switching, and relates to the technical field of energy-saving water supply, the energy-saving water supply system comprises a water storage mounting part, and the water storage mounting part is fixedly connected with a water inlet diversion device; the device is characterized in that the water storage mounting part is connected with a lifting floating part in a sliding manner; the lifting floating piece is in pipe connection with a water inlet flow dividing device; the water storage mounting part is fixedly connected with a control device; the lifting floating piece is fixedly connected with a liquid level detection piece; a liquid level control device is connected to the water storage mounting part in a sliding manner; the energy-saving water supply system can be matched with a water inlet flow dividing device in an auxiliary mode, can assist in efficient water supply switching work, can achieve circulation in the tank body, and solves the problems that an existing energy-saving water supply system utilizing time-phased pipe network switching is not provided with an auxiliary energy-saving residual water backflow structure, residual water is prone to deterioration and cannot be rapidly and reasonably utilized, and the energy-saving effect is poor. And meanwhile, a structure for assisting in automatically adjusting the accumulation amount according to the water consumption does not exist.
本发明提供一种利用分时段管网切换节能供水系统,涉及节能供水技术领域,包括蓄水安装部,所述蓄水安装部上固定连接有进水分流装置;其特征在于,所述蓄水安装部上滑动连接有升降浮动件;所述升降浮动件上管接有进水分流装置;所述蓄水安装部上固定连接有控制装置;所述升降浮动件上固定连接有液位检测件;所述蓄水安装部上滑动连接有液位控制装置;可以实现辅助配合进水分流装置,实现辅助进行高效的供水切换工作,可以实现在罐体内流通,解决了目前现有的利用分时段管网切换节能供水系统不具备辅助节能余水回流结构,余水容易变质,不能快速合理利用,同时不具备辅助根据用水量自动调节蓄积量结构的问题。
Energy-saving water supply system utilizing time-phased pipe network switching
The invention provides an energy-saving water supply system utilizing time-phased pipe network switching, and relates to the technical field of energy-saving water supply, the energy-saving water supply system comprises a water storage mounting part, and the water storage mounting part is fixedly connected with a water inlet diversion device; the device is characterized in that the water storage mounting part is connected with a lifting floating part in a sliding manner; the lifting floating piece is in pipe connection with a water inlet flow dividing device; the water storage mounting part is fixedly connected with a control device; the lifting floating piece is fixedly connected with a liquid level detection piece; a liquid level control device is connected to the water storage mounting part in a sliding manner; the energy-saving water supply system can be matched with a water inlet flow dividing device in an auxiliary mode, can assist in efficient water supply switching work, can achieve circulation in the tank body, and solves the problems that an existing energy-saving water supply system utilizing time-phased pipe network switching is not provided with an auxiliary energy-saving residual water backflow structure, residual water is prone to deterioration and cannot be rapidly and reasonably utilized, and the energy-saving effect is poor. And meanwhile, a structure for assisting in automatically adjusting the accumulation amount according to the water consumption does not exist.
本发明提供一种利用分时段管网切换节能供水系统,涉及节能供水技术领域,包括蓄水安装部,所述蓄水安装部上固定连接有进水分流装置;其特征在于,所述蓄水安装部上滑动连接有升降浮动件;所述升降浮动件上管接有进水分流装置;所述蓄水安装部上固定连接有控制装置;所述升降浮动件上固定连接有液位检测件;所述蓄水安装部上滑动连接有液位控制装置;可以实现辅助配合进水分流装置,实现辅助进行高效的供水切换工作,可以实现在罐体内流通,解决了目前现有的利用分时段管网切换节能供水系统不具备辅助节能余水回流结构,余水容易变质,不能快速合理利用,同时不具备辅助根据用水量自动调节蓄积量结构的问题。
Energy-saving water supply system utilizing time-phased pipe network switching
一种利用分时段管网切换节能供水系统
ZHOU SHENGGUANG (author) / XUE SHAN (author) / KONG LINGMIN (author) / LI LI (author) / ZHAO HAIFENG (author) / ZHANG JINGXIAN (author) / ZHAO ZHUYUN (author) / WU DI (author) / LI YI (author) / LIU WENFENG (author)
2023-11-17
Patent
Electronic Resource
Chinese
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