electrical-engineering-portal.com-a transformer is only as strong as its weakest link

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  • 8/9/2019 Electrical-Engineering-portal.com-A Transformer is Only as Strong as Its Weakest Link

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    electrical-engineering-portal.com http://electrical-engineering-portal.com/a-transformer-is-only-as-strong-as-its-weakest-li

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    A transformer is only as strong as its weakest link

    Electric arc furnace transformer – Alstom

    Transformer rating

    Capacity (or rating) of a transformer is limited by the temperature that the insulation can tolerate. Ratings can be

    increased by reducing core and copper losses, by increasing the rate of heat dissipation (better cooling), or by

    improving transformer insulation so it will withstand higher temperatures.

     A physically larger transformer can dissipate more heat, due to the increased area and increased 

    volume of oil.

     A transformer is only as strong as its weakest link, and the weakest link is the paper insulation, which begins to

    degrade around 100 °C. This means that a transformer must be operated with the “hottest spot” cooler than this

    degradation temperature, or service life is greatly reduced.

    http://electrical-engineering-portal.com/transformer-winding-faultshttp://electrical-engineering-portal.com/heating-of-the-dry-type-transformerhttp://electrical-engineering-portal.com/a-transformer-is-only-as-strong-as-its-weakest-linkhttp://electrical-engineering-portal.com/

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    Presspahn – A proven surface insulation material, resistant to high voltage and a high capacity for impregnation with transformer oil (by UKi –

    one of Europe’s largest suppliers of electrical insulation materials)

    Reclamation typically orders transformers larger than required, which aids in heat removal and increases

    transformer life.

    Ratings of transformers are obtained by simply multiplying the current times the voltage. Small transformers are rate

    in “VA,” volts times amperes.

     As size increases, 1 kilovoltampere (kVA) means 1,000 voltamperes, 1 megavoltampere (MVA) means 1 million

    voltamperes. Large generator step-up (GSUs) may be rated in hundreds of MVAs.

     A GSU transformer can cost well over a million dollars and take 18 months to 2 years or longer to

    obtain.

    Each one is designed for a specific application. If one fails, this may mean a unit or whole plant could be down for a

    long 2 years, costing multiple millions of dollars in lost generation, in addition to the replacement cost of thetransformer itself.

    This is one reason that proper maintenance is critical.

    http://electrical-engineering-portal.com/special-transformers-for-industrial-applications

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    This transformer used to be strong, but… (on photo: Transformer paper insulation damaged due to poor maintenance; credit:

    gcequipment.com)

    Reference: Transformers: Basics, Maintenance, and Diagnostics – U.S. Department of the Interior Bureau of 

    Reclamation

    About Author //

    Edvard Csanyi

    Edvard - Electrical engineer, programmer and founder of EEP. Highly specialized for 

    design of LV high power busbar trunking (

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    2.

    Foluso Omolewa

    May 29, 2014

    I mistakenly unsubscribed so I want to subacribe again. You are doing a good job by helping

    others. Thank you

    (reply)

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