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INNOVATIVE SOLAR WALL PERFORMANCE STUDY FOR LOW ENERGY BUILDINGS APPLICATIONS

CROITORU, Cristiana, Bode, Florin, Nastase, Ilinca, Dogeanu, d. Angel, Meslem, Amina

First published: 2014-06-20https://doi.org/10.5593/sgem2014/b41/s17.040View metrics

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  • CrossRef - Citation Indexes: 1
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Publication details

Title
INNOVATIVE SOLAR WALL PERFORMANCE STUDY FOR LOW ENERGY BUILDINGS APPLICATIONS
Authors
CROITORU, Cristiana, Bode, Florin, Nastase, Ilinca, Dogeanu, d. Angel, Meslem, Amina
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 14th SGEM GeoConference on ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2014
Pages
Not available yet
ISSN
1314-2704
ISBN
978-619-7105-15-5
Language
en
Publication type
Conference Paper
References28
  1. IEA, Renewables for heating and cooling: untapped potential. France: OECD/IEA;. 2007.

  2. 2. Chan, H. -Y., S.B. Riffat, and J. Zhu, Review of passive solar heating and cooling technologies. Renewable and Sustainable Energy REviews, 2010. 14(2): p. 781- 789.

  3. Conserval Engineering, I., Solar Wall. 2013: Canada.

  4. Gunnewiek, L.H., E. Brundrett, and K.G.T. Hollands, Flow distribution in unglazed transpired plate solar air heaters of large area. Solar Energy, 1996. 58(4–6): p. 227- 237.

  5. Van Decker, G.W.E., K.G.T. Hollands, and A.P. Brunger, Heat-exchange relations for unglazed transpired solar collectors with circular holes on a square or triangular pitch. Solar Energy, 2001. 71(1): p. 33-45.

  6. Nastase, I., A. Meslem, and P. Gervais, Primary and secondary vortical structures contribution in the entrainement of low Reynolds number jet flows. Experiments in Fluids, 2008. 44(6): p. 1027-1033.

  7. Nastase, I. and A. Meslem, Vortex Dynamics and Entrainment Mechanisms in Low Reynolds Orifice Jets. Journal of Visualisation, 2008. 11(4): p. 309-318.

  8. Nastase, I. and A. Meslem, Vortex dynamics and mass entrainment in turbulent lobed jets with and without lobe deflection angles. Experiments in Fluids, 2010. 48(4): p. 693-714.

  9. El- Hassan, M. and A. Meslem, Time-resolved stereoscopic PIV investigation of the entrainement in the near-field of circular and daisy-shaped orifice jets. Physics of Fluids, 2010. 22.

  10. Wang, X.K., L.P. Chua, and S.C.M. Yu, On the near field of a square jet with vortex generating tabs. Fluid Dynamics Research, 2003. 32: p. 99-117.

  11. Zaman, K.B.M.Q., Spreading characteristics of compressible jets from nozzles of various geometries. Journal of Fluid Mechanics, 1999. 383: p. 197-228. 14th SGEM GeoConference on Energy and Clean Technologies

  12. Zaman, K.B.M.Q., M.F. Reeder, and M. Samimy, Control of axisymmetric jet using vortex generators. Physics of Fluids, 1994. 6(2): p. 778-793.

  13. Meslem, A., I. Nastase, and F. Allard, Passive mixing control for innovative air diffusion terminal devices for buildings. Building and Environment, 2010. 45 ( 2679- 2688).

  14. Gunnewiek, L.H., Hollands, K.G.T., Brundrett, E., Effect of wind on flow distribution in unglazed transpired-plate collectors. Solar Energy, 2002. 72(4): p. 317- 325.

  15. IEA, Renewables for heating and cooling: untapped potential. France: OECD/IEA;. 2007.

  16. 2. Chan, H. -Y., S.B. Riffat, and J. Zhu, Review of passive solar heating and cooling technologies. Renewable and Sustainable Energy REviews, 2010. 14(2): p. 781- 789.

  17. Conserval Engineering, I., Solar Wall. 2013: Canada.

  18. Gunnewiek, L.H., E. Brundrett, and K.G.T. Hollands, Flow distribution in unglazed transpired plate solar air heaters of large area. Solar Energy, 1996. 58(4–6): p. 227- 237.

  19. Van Decker, G.W.E., K.G.T. Hollands, and A.P. Brunger, Heat-exchange relations for unglazed transpired solar collectors with circular holes on a square or triangular pitch. Solar Energy, 2001. 71(1): p. 33-45.

  20. Nastase, I., A. Meslem, and P. Gervais, Primary and secondary vortical structures contribution in the entrainement of low Reynolds number jet flows. Experiments in Fluids, 2008. 44(6): p. 1027-1033.

  21. Nastase, I. and A. Meslem, Vortex Dynamics and Entrainment Mechanisms in Low Reynolds Orifice Jets. Journal of Visualisation, 2008. 11(4): p. 309-318.

  22. Nastase, I. and A. Meslem, Vortex dynamics and mass entrainment in turbulent lobed jets with and without lobe deflection angles. Experiments in Fluids, 2010. 48(4): p. 693-714.

  23. El- Hassan, M. and A. Meslem, Time-resolved stereoscopic PIV investigation of the entrainement in the near-field of circular and daisy-shaped orifice jets. Physics of Fluids, 2010. 22.

  24. Wang, X.K., L.P. Chua, and S.C.M. Yu, On the near field of a square jet with vortex generating tabs. Fluid Dynamics Research, 2003. 32: p. 99-117.

  25. Zaman, K.B.M.Q., Spreading characteristics of compressible jets from nozzles of various geometries. Journal of Fluid Mechanics, 1999. 383: p. 197-228. 14th SGEM GeoConference on Energy and Clean Technologies

  26. Zaman, K.B.M.Q., M.F. Reeder, and M. Samimy, Control of axisymmetric jet using vortex generators. Physics of Fluids, 1994. 6(2): p. 778-793.

  27. Meslem, A., I. Nastase, and F. Allard, Passive mixing control for innovative air diffusion terminal devices for buildings. Building and Environment, 2010. 45 ( 2679- 2688).

  28. Gunnewiek, L.H., Hollands, K.G.T., Brundrett, E., Effect of wind on flow distribution in unglazed transpired-plate collectors. Solar Energy, 2002. 72(4): p. 317- 325.

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Number of times cited according to Crossref: 1

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