System voltage | 35 kV 36.75 kV 38.5 kV |
Maximum working voltage (High voltage side) | 40.5 kV |
Maximum working voltage (Low voltage side) | 0.27 kV 0.3 kV 0.315 kV 0.4 kV 0.5 kV 0.69 kV |
Rated frequency | 50 Hz |
Rated insulation level | |
Power frequency withstand voltage (High voltage switch) | 95 kV |
Power frequency withstand voltage (Transformer body) | 85 kV |
Impact peak withstands voltage | 200 kV |
Power frequency withstand voltage (Transformer low voltage side) | 5 kV |
Phase | Three |
Protection level | |
Tank | IP 68 |
High and low voltage room | IP 54 |
After opening the high-voltage chamber door | IP 3X |
If you are interested in our transformers and related transformer accessories, please get more information and professional solutions through this website or directly through info@wishpower.net
The Wind Power Transformer functions as a specific power transformer that assists wind energy grid addition by adjusting voltage levels to enable effective grid transmission and distribution. The Wind Power Transformer exists to fulfill the requirements of wind farm operation which combines power level instability with environmental challenges and mandatory energy conversion excellence. Wind power plants incorporate transformers mostly at wind turbine bases and substation locations for regulating the variable voltage which enables it to follow grid distribution protocols. Due to their position in isolated areas, wind power facilities need a construction that will endure harsh weather elements such as offshore salt exposures wide temperature swings, and high local humidity rates. The insulation subsystems receive additional strength for managing voltage transients originating from speed alterations and quick operational switches.
The Wind Power Transformer operates differently from its conventional counterparts because it features unique structural elements that solve wind energy generation issues. Since the units operate at offshore or distant wind farms they face harsh climate conditions such as temperature changes and high humidity combined with salt corrosion which demands additional protective materials. Wind power transformers need to handle unpredictable voltage disturbances from varying wind speeds because conventional transformers operate only within stable environments thus requiring an adjustable design with resilient insulation together with transient voltage protection systems.
Forged air and specialized liquid-immersed cooling systems present in wind power transformers control temperatures effectively during variations in load requirements. Their small and flexible design makes them compatible with limited areas such as turbine towers and offshore platforms whereas traditional transformers need substations with enough available space. These transformers fulfill sustainability requirements because they use both eco-friendly insulating fluids and energy-saving designs to support renewable energy projects.
The growing demand for renewable energy, combined with rising wind farm installations, has created a steady expansion in the market for wind power transformers. Worldwide government strategies to limit carbon emissions and develop clean energy facilities drive the necessity for wind-friendly electricity grid transformation devices that integrate power efficiently into electric networks. Because offshore wind project expansion continues at a rapid pace, high-performance transformers must be developed to handle harsh marine conditions.
The market is showing a technological evolution in transformer design. Manufacturers focus on building systems that attain higher efficiency while minimizing losses and strengthening materials. Operation assessments from smart monitoring systems, coupled with predictive maintenance abilities, are now mandatory elements that reduce maintenance expenses and production outages, particularly for offshore wind park locations. The growing importance of ecological responsibility drives changes in the industry. Manufacturers adopt biodegradable insulating fluids and eco-friendly materials that follow environmental regulations and corporate sustainability objectives.
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