A batch of QSZ submersible axial flow pumps and QSH submersible mixed flow pumps has completed production and inspection. The units are now being packed and prepared for shipment to the customer’s project site.
The series covers a power range of 7.5–55 kW and a flow capacity of 260–2,880 m³/h. These pumps are designed for agricultural irrigation, municipal flood drainage, water conservancy projects and other large-volume water-transfer applications.
Before packing, the pump model, nameplate data, rated power, voltage, frequency, cable length and supplied accessories should be checked against the order requirements. The pump body, fasteners, cable outlet and mounting components are also inspected before dispatch.
QSZ and QSH pumps generally have relatively large dimensions and considerable weight. Their packaging must therefore protect the equipment against impact, movement, moisture and component loosening during loading and long-distance transportation.
A secured base, moisture-resistant materials and suitable external packaging help protect the pump during road transport, sea freight and on-site lifting.
A QSZ axial flow pump moves water mainly in the direction of the pump shaft. It is generally used for high-flow and low-head operating conditions.
Typical applications include farmland irrigation, municipal stormwater discharge, drainage of low-lying areas, aquaculture circulation and water transfer between rivers, canals or reservoirs.
When a project must move a large quantity of water within a limited time and the total system head is relatively low, an axial flow pump is often considered first.
A QSH mixed flow pump produces both axial and radial water movement. Compared with a typical axial flow pump, it is more suitable for duties requiring high flow at a moderately higher head.
Common applications include water conservancy pumping stations, industrial cooling-water circulation, canal transfer, agricultural irrigation and municipal drainage.
A QSZ or QSH pump should not be selected according to motor power or outlet diameter alone. The first step is to confirm the required flow rate and total dynamic head.
Total head should include the vertical water-level difference, pipe friction and local losses caused by valves, elbows, fittings and outlet structures.
The following information is normally required:
For very-high-flow and low-head duties, a QSZ axial flow pump may be suitable. When the project requires high flow with a moderately higher head, a QSH mixed flow pump should be evaluated. Final selection must be verified using the pump performance curve and actual system resistance.
Pump performance is also influenced by the intake structure, minimum submergence, incoming water flow and discharge-pipe arrangement. Poor inlet conditions may cause vortices, vibration, noise or insufficient flow.
The pumping-station structure and installation method should therefore be confirmed during the project design stage. The pump must maintain the specified submerged depth and should not operate continuously when the water level is too low or the inlet is obstructed.
After packaging is completed, these QSZ/QSH high-flow submersible pumps will be dispatched according to the delivery schedule. Product data, installation instructions and related technical documents can be supplied according to project requirements.
For flood drainage, irrigation or large-volume water-transfer projects, providing accurate flow, head and installation data before ordering helps achieve a more reliable pump selection and reduces the risk of later pipeline modifications.
A batch of QSZ submersible axial flow pumps and QSH submersible mixed flow pumps has completed production and inspection. The units are now being packed and prepared for shipment to the customer’s project site.
The series covers a power range of 7.5–55 kW and a flow capacity of 260–2,880 m³/h. These pumps are designed for agricultural irrigation, municipal flood drainage, water conservancy projects and other large-volume water-transfer applications.
Before packing, the pump model, nameplate data, rated power, voltage, frequency, cable length and supplied accessories should be checked against the order requirements. The pump body, fasteners, cable outlet and mounting components are also inspected before dispatch.
QSZ and QSH pumps generally have relatively large dimensions and considerable weight. Their packaging must therefore protect the equipment against impact, movement, moisture and component loosening during loading and long-distance transportation.
A secured base, moisture-resistant materials and suitable external packaging help protect the pump during road transport, sea freight and on-site lifting.
A QSZ axial flow pump moves water mainly in the direction of the pump shaft. It is generally used for high-flow and low-head operating conditions.
Typical applications include farmland irrigation, municipal stormwater discharge, drainage of low-lying areas, aquaculture circulation and water transfer between rivers, canals or reservoirs.
When a project must move a large quantity of water within a limited time and the total system head is relatively low, an axial flow pump is often considered first.
A QSH mixed flow pump produces both axial and radial water movement. Compared with a typical axial flow pump, it is more suitable for duties requiring high flow at a moderately higher head.
Common applications include water conservancy pumping stations, industrial cooling-water circulation, canal transfer, agricultural irrigation and municipal drainage.
A QSZ or QSH pump should not be selected according to motor power or outlet diameter alone. The first step is to confirm the required flow rate and total dynamic head.
Total head should include the vertical water-level difference, pipe friction and local losses caused by valves, elbows, fittings and outlet structures.
The following information is normally required:
For very-high-flow and low-head duties, a QSZ axial flow pump may be suitable. When the project requires high flow with a moderately higher head, a QSH mixed flow pump should be evaluated. Final selection must be verified using the pump performance curve and actual system resistance.
Pump performance is also influenced by the intake structure, minimum submergence, incoming water flow and discharge-pipe arrangement. Poor inlet conditions may cause vortices, vibration, noise or insufficient flow.
The pumping-station structure and installation method should therefore be confirmed during the project design stage. The pump must maintain the specified submerged depth and should not operate continuously when the water level is too low or the inlet is obstructed.
After packaging is completed, these QSZ/QSH high-flow submersible pumps will be dispatched according to the delivery schedule. Product data, installation instructions and related technical documents can be supplied according to project requirements.
For flood drainage, irrigation or large-volume water-transfer projects, providing accurate flow, head and installation data before ordering helps achieve a more reliable pump selection and reduces the risk of later pipeline modifications.