330-500kV power transformer

330-500kV power transformer

330-500kV power transformer

Parameters: Rated Voltage: up to 500kV
Capacity: up to 1200MVA (Three phases)
Capacity: up to 400MVA (Single phase)

A 330-500kV Power Transformer is an ultra-high-voltage transformer designed for large-scale power transmission in electrical grids. These transformers are critical for transmitting electricity over long distances with minimal energy loss, ensuring efficient power flow across national and international grids.

Key Features of 330-500kV Power Transformers:

Ultra-High Voltage Efficiency – These transformers handle voltages in the 330kV to 500kV range, allowing for the efficient long-distance transmission of large amounts of electrical power. They step up the voltage for transmission and step it down at substations for safer distribution.

Oil-Immersed Cooling System – Typically oil-immersed for optimal cooling and insulation, these transformers are built to handle high-energy loads while preventing overheating and maintaining stable operation.

Durability and Reliability – Engineered to operate under extreme conditions, these transformers are built for long-term reliability and are essential for national power grid stability.

Applications:

National Power Grids – Used for long-distance transmission across countries or between regions, ensuring efficient electricity supply for large populations.

Substations – Step down ultra-high voltage to lower levels for distribution to local grids, commercial centers, and industrial hubs.

Cross-Border Power Transmission – Often used in cross-border electricity exchanges, ensuring efficient power delivery across international networks.

330-500kV Power Transformers are essential components in ultra-high-voltage transmission networks, where they ensure efficient delivery of electricity across vast distances. These transformers are commonly found in power generation plants, major substations, and large-scale industrial facilities, playing a critical role in maintaining grid stability and minimizing energy losses during transmission.

Frequently Asked Questions

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