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AIR MOVEMENT MEASUREMENT AND SIMULATION INSIDE A STANDARD CLEANROOM, PRODUCED BY AN INLET DEVICE WITH DOUBLE EXPONENTIAL PROFILE

Muntea, Cornel, Domnita, Florin

First published: 2015https://doi.org/10.5593/sgem2015/b41/s19.109View metrics

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Title
AIR MOVEMENT MEASUREMENT AND SIMULATION INSIDE A STANDARD CLEANROOM, PRODUCED BY AN INLET DEVICE WITH DOUBLE EXPONENTIAL PROFILE
Authors
Muntea, Cornel, Domnita, Florin
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2015
Pages
843-850
ISSN
1314-2704
ISBN
978-619-7105-38-4
Language
en
Publication type
Conference Paper
References16
  1. Popovici T., Ventilation and Air Conditioning Systems (in Romanian), v ol. I, U.T.PRESS Publishing House, Cluj-Napoca, Romania, ISBN 978-973-662-539-8, pp 13-25, 123-137, 2010;

  2. Domniţa F.V., Contributions on decontamination and air conditioning in h ospitals (in Romanian), Ph.D. Thesis, Cluj-Napoca; Romania, pp. 43-44, 66-71, 2003;

  3. Niculescu N., Stoenesc u P., Duţă G., Colda I. , Ventilation and Air Conditioning Systems (in Romanian), Didactic and Pedagogic Publishing House, Bucharest, Romania; pp 225-231, 1982;

  4. Jagadeesh R.S., Chetan C.G., Reformulation of the Colebrook−White Equation for Turbulent Flow Friction Factor Calculation, Journal of Industrial and Engineering Chemical Research, U.S.A., vol. 46 /issue 8, ISSN 0888-5885, pp 2593–2600, 2007:

  5. Linden E., Sandberg M., Temperature and Velocity Measurements of a Diffuser for Displacement Ventilation with Whole-Field Methods, International Conference on Air Distribution in Rooms, Stockholm, Sweden, vol.1, pp 491–496, 2000;

  6. Chen Q. , Prediction of room air motion by Reynolds-Stress models, Building and Environment, U.S.A., vol. 31/Issue 3, ISSN: 0360-1323, pp 233–244, 1996;

  7. International Standard ISO 14644-1,2,3, Cleanroom and associated controlled environments, pp 7 -10, 18-24, 46-48;

  8. Hanzawa H., Melikow A.K., Airflow characteristics in the occupied zone of ventilated spaces, ASHRAE Transactions102, Atlanta, U.S.A., pp 79-82, 2013. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  9. Popovici T., Ventilation and Air Conditioning Systems (in Romanian), v ol. I, U.T.PRESS Publishing House, Cluj-Napoca, Romania, ISBN 978-973-662-539-8, pp 13-25, 123-137, 2010;

  10. Domniţa F.V., Contributions on decontamination and air conditioning in h ospitals (in Romanian), Ph.D. Thesis, Cluj-Napoca; Romania, pp. 43-44, 66-71, 2003;

  11. Niculescu N., Stoenesc u P., Duţă G., Colda I. , Ventilation and Air Conditioning Systems (in Romanian), Didactic and Pedagogic Publishing House, Bucharest, Romania; pp 225-231, 1982;

  12. Jagadeesh R.S., Chetan C.G., Reformulation of the Colebrook−White Equation for Turbulent Flow Friction Factor Calculation, Journal of Industrial and Engineering Chemical Research, U.S.A., vol. 46 /issue 8, ISSN 0888-5885, pp 2593–2600, 2007:

  13. Linden E., Sandberg M., Temperature and Velocity Measurements of a Diffuser for Displacement Ventilation with Whole-Field Methods, International Conference on Air Distribution in Rooms, Stockholm, Sweden, vol.1, pp 491–496, 2000;

  14. Chen Q. , Prediction of room air motion by Reynolds-Stress models, Building and Environment, U.S.A., vol. 31/Issue 3, ISSN: 0360-1323, pp 233–244, 1996;

  15. International Standard ISO 14644-1,2,3, Cleanroom and associated controlled environments, pp 7 -10, 18-24, 46-48;

  16. Hanzawa H., Melikow A.K., Airflow characteristics in the occupied zone of ventilated spaces, ASHRAE Transactions102, Atlanta, U.S.A., pp 79-82, 2013. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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