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THE VENTILATION RATE DETERMINATION IN THE OFFICE ROOMS

Kapalo, Peter, Domnitae, Florin, Burdova, Eva Kridlova, Nagy, Richard, Rysulova, Martina

First published: 2015https://doi.org/10.5593/sgem2015/b51/s20.128View metrics

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Publication details

Title
THE VENTILATION RATE DETERMINATION IN THE OFFICE ROOMS
Authors
Kapalo, Peter, Domnitae, Florin, Burdova, Eva Kridlova, Nagy, Richard, Rysulova, Martina
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, ECOLOGY, ECONOMICS, EDUCATION AND LEGISLATION
Publisher
Stef92 Technology
Year
2015
Pages
961-968
ISSN
1314-2704
ISBN
978-619-7105-39-1
Language
en
Publication type
Conference Paper
References20
  1. STN EN 730540-2 (2012), Thermal performance of buildings and constructions, E.U., 2012, pp 3-8;

  2. Pilipová I., Vilčeková S. (2013), Occupants’ comfort and performance in building with smart elements - a case study. International Journal of Construction Engineering and Management, vol. 2, no. 4, ISSN 2326-1080 , p. 113-121;

  3. Budaiová Z., Vilčekoá S. (2014) Impact of indoor environmental quality on users´ performance in office – Case study. Quaere 2014. vol. 4, Hradec Králové, Česká republika, ISBN 978-80-87952-04-7, p. 1418-1426;

  4. Tóth S., Vojtuš J., Monitoring and analysis of fungal organisms in bu ilding structures, Advanced Materials Research, Vol. 969, Trans Tech Publications Inc. , U.S.A., 2014, ISSN 1022-6680, pp 265-270;

  5. STN EN 13779 (2007), Ventilation in nonresidential buildings. General requirements for ventilation and air conditioning equipment, E.U., 2017, pp 12- 15;

  6. Kapalo P., Domnita F., Lojkovics J., Methodology for calculating the fresh air ventilation airflow rate based on CO 2 concentration, Pollack Periodica, v ol. 9 , Issue 2, August 2014, Akademia Kiado, Hungary, ISSN 1788-1994, pp 89-97;

  7. Mahyuddin N ., Awbi H .B., A Review of CO 2 Measurement Procedures in Ventilation Research, International Journal of Ventilation, vol. 10, Issue 4, March 2012, Veetech Ltd, Coventry, United Kingdom, ISSN 2044-4044, pp 353-370;

  8. Voigt E ., Pelikan J., CO2-Measurement during Ventilation, Dräger Medizintechnik GmbH, 2010, Lübeck, Germany, ISBN 3-926762-38-1, pp 45-49;

  9. Niculita L., Ardelean F., Ioja C., Habitation quality evaluation model, 4 th International Multidisciplinary Scientific Conference SGEM 2014, Energy and Clean Technologies, Albena, Bulgaria, Conference Proceedings Book 4, vol. 2, ISSN 1 314-2704, pp 367-374; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015

  10. Kubeckova D., Vlcek P., Kubecka K., Environmental aspects of the designing of buildings, 4 th International Multidisciplinary Scientific Conference SGEM 2014, Energy and Clean Technologies, Albena, Bulgaria, Conference Proceedings Book 5, vol. 3, ISSN 1314 -2704, pp 135-142; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  11. STN EN 730540-2 (2012), Thermal performance of buildings and constructions, E.U., 2012, pp 3-8;

  12. Pilipová I., Vilčeková S. (2013), Occupants’ comfort and performance in building with smart elements - a case study. International Journal of Construction Engineering and Management, vol. 2, no. 4, ISSN 2326-1080 , p. 113-121;

  13. Budaiová Z., Vilčekoá S. (2014) Impact of indoor environmental quality on users´ performance in office – Case study. Quaere 2014. vol. 4, Hradec Králové, Česká republika, ISBN 978-80-87952-04-7, p. 1418-1426;

  14. Tóth S., Vojtuš J., Monitoring and analysis of fungal organisms in bu ilding structures, Advanced Materials Research, Vol. 969, Trans Tech Publications Inc. , U.S.A., 2014, ISSN 1022-6680, pp 265-270;

  15. STN EN 13779 (2007), Ventilation in nonresidential buildings. General requirements for ventilation and air conditioning equipment, E.U., 2017, pp 12- 15;

  16. Kapalo P., Domnita F., Lojkovics J., Methodology for calculating the fresh air ventilation airflow rate based on CO 2 concentration, Pollack Periodica, v ol. 9 , Issue 2, August 2014, Akademia Kiado, Hungary, ISSN 1788-1994, pp 89-97;

  17. Mahyuddin N ., Awbi H .B., A Review of CO 2 Measurement Procedures in Ventilation Research, International Journal of Ventilation, vol. 10, Issue 4, March 2012, Veetech Ltd, Coventry, United Kingdom, ISSN 2044-4044, pp 353-370;

  18. Voigt E ., Pelikan J., CO2-Measurement during Ventilation, Dräger Medizintechnik GmbH, 2010, Lübeck, Germany, ISBN 3-926762-38-1, pp 45-49;

  19. Niculita L., Ardelean F., Ioja C., Habitation quality evaluation model, 4 th International Multidisciplinary Scientific Conference SGEM 2014, Energy and Clean Technologies, Albena, Bulgaria, Conference Proceedings Book 4, vol. 2, ISSN 1 314-2704, pp 367-374; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015

  20. Kubeckova D., Vlcek P., Kubecka K., Environmental aspects of the designing of buildings, 4 th International Multidisciplinary Scientific Conference SGEM 2014, Energy and Clean Technologies, Albena, Bulgaria, Conference Proceedings Book 5, vol. 3, ISSN 1314 -2704, pp 135-142; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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