We know your projects demand reliability, so I offer a generator stator cooling centrifugal pump built for continuous duty. For Wholesale buyers and Manufacturers, this unit delivers dependable cooling, reduced thermal stress, and longer motor life. It features a corrosion‑resistant housing, high‑efficiency impeller, and precision bearings, performing under varying loads and ambient temps. The integrated cooling circuit prevents stator overheating during starts, while standard flange connections simplify installation. The design supports OEM customization, scalable outputs, and competitive bulk pricing. I provide complete datasheets, tested performance curves, and responsive after‑sales support to keep your supply chain smooth. If you need a robust, cost‑effective solution for generator stator cooling in your plant, this option fits both procurement paths and direct factory orders for Wholesale or Manufacturers inquiries.
Generator stator cooling centrifugal pumps are essential for maintaining windings’ temperature and efficiency in power generation. In concept, engineers define required flow, head, and allowable temperature rise for the coolant, and ensure chemical compatibility. CFD and thermal analysis optimize the impeller, volute, and diffuser for high efficiency, while selecting corrosion‑resistant materials and robust seals to withstand challenging service. The design also accounts for variable speeds, easy maintenance, and compatibility with monitoring systems. Turning concept into a finished pump involves rigorous manufacturing and testing. Precision casting or machining builds the housing, impeller, and glands, followed by balancing and leak testing. Each unit undergoes performance verification at rated flow and head, with temperature and vibration data logged for traceability. A quality system ensures coatings, provenance, and packing meet international standards. Customization includes flanges, connection sizes, and mounting, with clear lead times and reliable after‑sales support for spares and on-site commissioning.
| Product ID | Stage | Model | Flow Rate (m3/h) | Head (m) | Impeller Dia (mm) | Power (kW) | Efficiency (%) | Cooling Method | Stator Winding | Inlet (mm) | Outlet (mm) | Casing Material | Certification | Lead Time (weeks) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| P-PSC-101 | Concept | GSC-1000 | 25 | 40 | 180 | 7.5 | 86 | Water-cooled | Copper windings | 200 | 150 | Cast Iron | ISO 9001; CE | 6 |
| P-PSC-102 | Prototype | GSC-1100 | 40 | 60 | 220 | 11 | 88 | Water-cooled | Copper windings | 250 | 200 | Stainless Steel | ISO 9001; CE | 8 |
| P-PSC-103 | Testing | GSC-1200 | 70 | 75 | 280 | 22 | 90 | Air-cooled | Copper windings | 300 | 250 | Cast Iron | ISO 9001; CE | 12 |
| P-PSC-104 | Pilot | GSC-1300 | 120 | 95 | 400 | 45 | 92 | Water-cooled | Copper windings | 420 | 320 | Stainless Steel | ISO 9001; CE | 14 |
| P-PSC-105 | Production | GSC-1400 | 220 | 110 | 520 | 90 | 93 | Water-cooled | Copper windings | 550 | 420 | Cast Iron | ISO 9001; CE; API 610 | 20 |
| P-PSC-106 | Delivery | GSC-1500 | 320 | 130 | 620 | 132 | 94 | Water-cooled | Copper windings | 660 | 520 | Stainless Steel | ISO 9001; CE; API 610 | 24 |