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Three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment
The invention discloses three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment, and belongs to the technical field of water supply equipment, the three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment comprises a main water tank and a mounting rack, and the main water tank and an auxiliary water tank are fixedly mounted on the mounting rack; according to the invention, by adopting the design of the two auxiliary water tanks and the main water tank, a three-tank system is formed, and the buoyancy component is arranged in the system, so that the problem that the water pressure is reduced due to the reduction of the water quantity can be effectively solved, the residual water source in the main water tank can still be smoothly output at normal pressure without influencing the use, and meanwhile, the automatic water replenishing process in the system can be realized; meanwhile, due to the fact that the one-way water guide nozzle is arranged in the buoyancy assembly, when water is supplemented into the main water tank, water flow can be concentrated in the middle of the buoyancy assembly through the inclined face of the concave floating disc and finally flows out through the one-way water guide nozzle for water supplementing, and after the water level is increased, the water flow cannot flow back through the one-way water guide nozzle again; therefore, buoyancy borne by the buoyancy assembly can be effectively guaranteed, and normal work of the buoyancy assembly is guaranteed.
本发明公开了一种三罐体稳压补偿无负压供水设备,属于供水设备技术领域,包括主水箱和安装架,所述安装架上固定安装有主水箱与副水箱;本发明中,通过采用两副水箱与一主水箱的设计,形成三罐体系统,在系统内设置有浮力组件,可有效解决由于水量减少导致水压降低的问题,可使主水箱内剩余的水源依旧可通畅常压的输出,不影响使用,同时,可实现系统内的自动补水过程,无需人工管控智能化程度高,同时由于在浮力组件的内部设置有单向导水嘴,在向主水箱内补水时,水流可通过凹面浮盘的斜面集中于其中部,最终通过单向导水嘴流出,进行补水,水位提高后,水流无法重新通过单向导水嘴回流,从而可有效保证浮力组件受到的浮力,保证其正常工作。
Three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment
The invention discloses three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment, and belongs to the technical field of water supply equipment, the three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment comprises a main water tank and a mounting rack, and the main water tank and an auxiliary water tank are fixedly mounted on the mounting rack; according to the invention, by adopting the design of the two auxiliary water tanks and the main water tank, a three-tank system is formed, and the buoyancy component is arranged in the system, so that the problem that the water pressure is reduced due to the reduction of the water quantity can be effectively solved, the residual water source in the main water tank can still be smoothly output at normal pressure without influencing the use, and meanwhile, the automatic water replenishing process in the system can be realized; meanwhile, due to the fact that the one-way water guide nozzle is arranged in the buoyancy assembly, when water is supplemented into the main water tank, water flow can be concentrated in the middle of the buoyancy assembly through the inclined face of the concave floating disc and finally flows out through the one-way water guide nozzle for water supplementing, and after the water level is increased, the water flow cannot flow back through the one-way water guide nozzle again; therefore, buoyancy borne by the buoyancy assembly can be effectively guaranteed, and normal work of the buoyancy assembly is guaranteed.
本发明公开了一种三罐体稳压补偿无负压供水设备,属于供水设备技术领域,包括主水箱和安装架,所述安装架上固定安装有主水箱与副水箱;本发明中,通过采用两副水箱与一主水箱的设计,形成三罐体系统,在系统内设置有浮力组件,可有效解决由于水量减少导致水压降低的问题,可使主水箱内剩余的水源依旧可通畅常压的输出,不影响使用,同时,可实现系统内的自动补水过程,无需人工管控智能化程度高,同时由于在浮力组件的内部设置有单向导水嘴,在向主水箱内补水时,水流可通过凹面浮盘的斜面集中于其中部,最终通过单向导水嘴流出,进行补水,水位提高后,水流无法重新通过单向导水嘴回流,从而可有效保证浮力组件受到的浮力,保证其正常工作。
Three-tank pressure-stabilizing compensation non-negative-pressure water supply equipment
一种三罐体稳压补偿无负压供水设备
YANG DONGXIANG (Autor:in)
25.03.2022
Patent
Elektronische Ressource
Chinesisch
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