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Power transformers with environmentally friendly and low flammability ester liquids

  • cigre 2012
  • Published:
e & i Elektrotechnik und Informationstechnik Aims and scope Submit manuscript

Abstract

To improve personal safety and reduce the environmental impact of electrical power supply, alternative insulation fluids are demanded for large power transformers. With their biodegradability, the fact that they can be produced from renewable resources, and the high fire point properties, ester fluids are becoming potential substitutes for mineral oil. A number of companies offer such alternative insulation fluids, and in many distribution transformers they are already used satisfactorily. So far, however, there is little experience for use of these liquids in large power transformers. Even in proven high-voltage applications with mineral oil, every change in transformer design or materials needs to be evaluated. Changing such a crucial component as the insulating liquid itself, the suitability must be proven most thoroughly. This paper illustrates various issues which must be clarified in order to successfully operate power transformers filled with these environmentally friendly, renewable and barely inflammable insulating liquids.

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References

  • ABB (2002): Biotemp, Descriptive Bulletin 47-1050 Revised 01/02.

  • Balzer, G., Heil, F., Kirchesch, P., Drecher, D., Meister, R., Neumann, C. (2004): Evaluation of failure data of HV circuit-breakers. A3-305. In Cigré Session 2004, Paris.

  • Borsi, H., Gockenbach, E. (2005): Properties of ester liquid MIDEL 7131 as an alternative liquid to mineral oil for transformers. In Division of high voltage engineering Hannover, Germany.

    Google Scholar 

  • Cigre WG A2.35 (2010): Experiences in service with new insulating liquids. Brochure (Vol. 436). ISBN: 978-2-85873-124-4.

    Google Scholar 

  • Cooper Power Systems (2005): Envirotemp FR3 fluid—Bulletin B900-00092 product information, June 2005.

  • Elantas (2007): Becfluid 9902 product information, 07.2007.

  • Gasser, H. P., Krause, C., Lashbrook, M., Martin, R. (2011): Aging of pressboard in different insulating liquids. In IEEE international conference on dielectric liquids (pp. 1–5).

    Google Scholar 

  • IEC 60156 (1995): Insulating liquids—determination of the breakdown voltage at power frequency—test method. 2nd ed.

    Google Scholar 

  • IEC 60076-3 (2000): Power transformers—Part 3: Insulation levels, dielectric tests and external clearances in air. 2nd ed.

    Google Scholar 

  • IEC 60243-3 (2001): Electrical strength of insulating materials—test methods—Part 3. 2nd ed.

    Google Scholar 

  • Koch, M., Krüger, M., Tenbohlen, S. (2008): Moderne Verfahren zur Bestimmung des Wassergehalts in Leistungstransformatoren. In Stuttgarter Hochspannungssymposium.

    Google Scholar 

  • Liu, Q., Wang, Z. D. (2011): Streamer characteristic and breakdown in synthetic and natural ester transformer liquids under standard lightning impulse voltage. IEEE Trans. Dielectr. Electr. Insul.

  • M&I Materials Ltd (2007a): Product overview Midel 7131. Technical datasheet No 2, 01.2007.

  • M&I Materials Ltd (2007b): Product overview Midel eN. Technical datasheet No 2, 01.2007.

  • McShane, C. P. (2000): Natural and synthetic ester dielectric fluids: their relative environmental, fire safety, and electrical performance. In Cooper power systems.

    Google Scholar 

  • Ngoc, M. N., Lesaint, O., Bonifaci, N., Denat, A., Hassanzadeh, M. (2010): A comparison of breakdown properties of natural and synthetic esters at high voltage. In 2010 annual report conference on electrical insulation and dielectric phenomena. ISBN 978-1-4244-9471-2.

    Google Scholar 

  • Nynas (2001): Transformatorenöl Handbuch. www.nynas.com/naphthenics.

  • Nynas (2006): Nytro 4000X, Naphthenics product data sheet 2006-12-18.

  • Pukel, G., Schwarz, R., Schatzl, F., Baumann, F., Gerstl, A. (2009): Environmental friendly insulating liquids—a challenge for power transformers. In 6th Southern Africa regional conference, Cigré 2009, P510.

    Google Scholar 

  • Tenbohlen, S., Koch, M. (2010): Aging performance and moisture solubility of vegetable oils for power transformers. IEEE Trans. Power Deliv., 25(2), 825–830.

    Article  Google Scholar 

  • Tenbohlen, S., Koch, M., Baum, J., Harthun, J., Schäfer, M., Barker, S., Frotscher, R., Dohnal, D., Dyer, P. (2008): Application of vegetable oil-based insulating fluids to hermetically sealed power transformers. In CIGRE 2008, Paris. Paper no. A2-102.

    Google Scholar 

  • Wacker (2007): Technical data sheet POWERSIL® FLUID TR 50 (05.2008): http://www.wacker.com.

Download references

Acknowledgements

The authors would like to thank the members of the High Voltage Test Laboratory at Graz University of Technology for their assistance during the testing.

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Correspondence to G. J. Pukel.

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Paper submitted for the CIGRE Session 2012, SC A2, Paris, France, August 27–31, 2012.

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Pukel, G.J., Schwarz, R., Baumann, F. et al. Power transformers with environmentally friendly and low flammability ester liquids. Elektrotech. Inftech. (2013). https://doi.org/10.1007/s00502-012-0110-4

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  • DOI: https://doi.org/10.1007/s00502-012-0110-4

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