Introduction
The core working mechanism of vertical axial flow pump is to realize the drainage and transportation of the medium by means of the lift generated by the pump blades, and finally to the outlet. The medium enters and exits axially in the vertical axial flow pump, which makes the pump have the advantages of low lift and large flow. Low lift means that compared with some other types of pumps with high lift demand, it is more focused on achieving efficient medium transportation within a relatively small pressure increase range. For example, in some areas with relatively flat terrain, short conveying distance and low requirements for pressure rise, vertical axial flow pump can give full play to its advantages and realize stable transmission of large flow with low energy consumption.However, due to its large flow rate, it can handle a large amount of media in a unit time, and meet such scenes as large-scale water allocation in urban water supply and drainage systems, rapid water filling and drainage in the process of water lifting in docks, and the demand and supply of a large amount of water in aquaculture and planting fields.

Vertical axial flow pump can be used to transport clean water, rain sewage and liquid with slight corrosiveness. However, in order to ensure the long-term stable operation and service life of the pump body, the maximum temperature of the liquid transported should not exceed 50℃.
Vertical axial flow pump is widely used in urban water supply and drainage, dock lifting, aquaculture and planting water by virtue of its unique working principle based on blade lift, axial flow characteristics, performance advantages of low lift and large flow, and certain adaptability to various media.
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