icon_close_region

Sinofluid Submersible Electric Pump Factory's Six Major Sections Successfully Begin Operations


01/10

2022

 

Sinofluid Submersible Electric Pump Factory (ESP) has established six production sections: stator stacking, stator winding, motor assembly, pump assembly, protector assembly, and separator assembly. Currently, the factory has achieved an annual production capacity of 1,150 sets of submersible electric pumps. 
The submersible electric pump production includes: 23 series with 550 specifications. 
1. TM375, 456, 540, 562, and 738 series submersible oil motors; 
2. TPR338, 400, 513, and 675 series protectors; 
3. TS338, 400, and 513 series separators; 
4. Inlet sections of the TIN338, 400, 513, and 675 series; 
5. TP338, 400, 513, and 675 series pumps; 
Complete scope: Motor, protector, separator (or suction inlet), pump, small flat cable terminations, power cable, control cabinet, wellhead assembly, downhole accessories, and downhole tools. 
Scope of application: Operating temperature ranges from 90°C to 260°C, with a maximum head of 5,000 meters and a flow rate of up to 3,000 cubic meters per day. Widely used in offshore and onshore oil extraction, geothermal water systems, ultra-high-head groundwater applications, small-diameter mountain well systems, as well as for extracting corrosive liquids such as underground brine. 
Upgrading and Replacing Submersible Electric Pump Manufacturing Technology: 
1. High-efficiency, wide-channel vane diffuser 
2. High-Capacity Thrust Bearing 
3. Sand-proof electric pump 
4. Corrosion-resistant electric pump 
5. High-Temperature Electric Pump 
6. Capacity-Enhancing Motor

Sinofluid continues to expand its product range in the submersible electric pump sector, integrating cutting-edge technology across its entire lineup. This ensures that Sinofluid’s submersible water pumps and submersible oil pumps meet globally advanced, high-quality standards. We are confident that Sinofluid’s pump technology will continually enhance the efficiency of our current production processes.