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Application of the Chimney Cap as a Method of Improving the Effectiveness of Natural Ventilation in Buildings

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1. Awbi H. (1991):Ventilation of buildings, Chapman & Hall.Search in Google Scholar

2. Awbi H., Gan G. (1992): Simulation of solar induced ventilation, Second World Renewable Energy Congress, vol. 4, Solar and Low Energy Architecture, September 1992, Pergamon Press, Oxford.Search in Google Scholar

3. Axley J. (1998): Introduction to the design of natural ventilation system loopequation, Proc. 19th AIVC Conf. Ventilation Technologies Urban Areas, 47‒56.Search in Google Scholar

4. Bülow-Hübe H. (2001): Energy-Efficient Window Systems. Doctoral Dissertation. ISSN 1103-4467. Lund University, Lund Institute of Technology, Lund.Search in Google Scholar

5. Cao G., Awbi H., Yan R., Fan Y., Siren K., Kosonen R., Zhang J. (2014): A review of the performance of different ventilation and airflow distribution systems in buildings. Buildings and Environment, 73, 171‒186.10.1016/j.buildenv.2013.12.009Search in Google Scholar

6. Clarke D. (2001): A breath of fresh air. Hospital Development, 32(11), 13‒17.Search in Google Scholar

7. FitzgeraldS.D., Woods A.W.(2008): The influence of stacks on flow patterns and stratification associated with natural ventilation.Energy and Buildings, 43, 1719‒1733.10.1016/j.buildenv.2007.10.021Search in Google Scholar

8. Gładyszewska-Fiedoruk K., Gajewski A. (2012): Effect of wind on stack ventilation performance. Energy and Buildings, 51, 242‒247.10.1016/j.enbuild.2012.05.007Search in Google Scholar

9. Jarząbska-Antczak R., Niedostatkiewicz M. (2017): Design and diagnostics of gravitational ventilation. Selected problems.Search in Google Scholar

10. Polskie Centrum Budownictwa Difin i Muller sp. z o.o., 1‒80, Warszawa.Search in Google Scholar

11. Krishan A. (2001): Climate responsive architecture: a design handbook for energy efficient buildings, Tata McGraw-Hill, New York.Search in Google Scholar

12. LBNL (2007):Energy Plus Engineering Reference, November 6, 2007, pp. 384 and 381.Search in Google Scholar

13. Nazaroff W. W. (2008): Inhalation intake fraction of pollutants from episodic indoor emissions. Building and Environment, 43(3), 269‒277.10.1016/j.buildenv.2006.03.021Search in Google Scholar

14. Novoselac A., Srebric J. (2003): Comparison of air exchange efficiency and contaminant removal effectiveness as IAQ indices. ASHRAE Trans., 109, 339‒349.Search in Google Scholar

15. Okisalo J., Kurnitski J., Korpi M., Kalamees T., Vinha J.(2009): Building leakage, infiltration, and energy performance analyses for Finnish detached houses. Building and Environment, 44, 377‒387.10.1016/j.buildenv.2008.03.014Search in Google Scholar

16. Roos A. (1998): The air exchange efficiency of the desk displacement ventilation concept-Theory, measurements and simulations, Proc. Roomvent’98, vol.1, pp.249‒256, Stockholm, Sweden.Search in Google Scholar

17. Sandberg M. (1981): What is ventilation efficiency? Building and Environment, 16, 123‒135.10.1016/0360-1323(81)90028-7Search in Google Scholar

18. PN-83/B-03430 (including revision A3:2000). Ventilation in collective dwelling places and public buildings – requirements, (in Polish).Search in Google Scholar

19. LAB-EL Elektronika Laboratoryjna s.j. Available from www.label.pl.Search in Google Scholar

eISSN:
2083-7429
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other, Geosciences, Atmospheric Science and Climatology, Life Sciences