1.Load Matching: Ensure that the transformer's load matches its rated capacity. Both overloading and underloading can reduce efficiency. Regularly review and adjust the load to ensure the best match.
2.Regular Maintenance: Perform routine maintenance and inspections, including insulation testing, cooling system checks, oil quality checks, and cleaning. Maintain the transformer in operating condition to prevent damage or energy waste.
3.Low Load Periods: During periods of low load, consider reducing the operation of the transformer or using one of multiple transformers. This helps minimize waste.
4.Use Efficient Cooling Systems: If the transformer employs air cooling or liquid cooling systems, ensure that these systems are in good working condition. Optimize the cooling system to lower the operating temperature of the transformer.
5.Minimize Losses: Reducing iron losses and copper losses is key to improving transformer efficiency. Use high-quality materials and designs to minimize losses.
6.Voltage Adjustment: Adjust the output voltage as needed to ensure it matches load requirements. Both overvoltage and undervoltage can affect efficiency and equipment performance.
Rated Capacity: | 630 kVA; |
Mode: | S11-M-630/11/0.44 or depends; |
Primary Voltage: | 11kV; |
Secondary Voltage: | 440V; |
No Loading Loss: | 810 ±10% W; |
Loading Loss: | 6200 ±10% W; |
Impedance: | 4.5% ± 10%; |
Vector Group: | Dyn5; Dyn11; Yyn0; |
Temperature Rise: | adhere to clients or IEC 60076; |
Insulation type: | oil immersed or cast resin; . |
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Oil Filled
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Oil Emptied
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Amorphous Alloy
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Rolled Iron Core
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Winding Workshop |
Coil Drying Area |
Oil Filling Area |
Finished Product Area |
Transformer Oven |
Casting Equipment |
Foil winding machine |
Wooden Box |
Steel Structure |