Thermal comfort in classrooms considering a traditional wind tower in Trabzon through simulation

Author:

Rabeharivelo Rova,Kavraz Mustafa,Aygün Cemalettin

Publisher

Springer Science and Business Media LLC

Subject

Energy (miscellaneous),Building and Construction

Reference26 articles.

1. Abdaei K, Azami A (2013). Sustainability analyses of passive cooling systems in Iranian traditional buildings approaching wind-catchers. In: Zaharim A, Panagopoulos T, Zhang Y, et al. (eds), Recent Advances in Energy, Environment and Development. Athens, Greece: WSEAS Press. pp. 124–129.

2. Calautit JK, Hughes BR, Chaudhry HN, et al. (2013). CFD analysis of a heat transfer device integrated wind tower system for hot and dry climate. Applied Energy, 112: 576–591.

3. Chan HY, Riffat SB, Zhu J (2010). Review of passive solar heating and cooling technologies. Renewable and Sustainable Energy Reviews, 14: 781–789.

4. Chaudhry HN, Calautit JK, Hughes BR (2015). Computational analysis of a wind tower assisted passive cooling technology for the built environment. Journal of Building Engineering, 1: 63–71.

5. Ghadiri HM, Ibrahim NLN, Dehnavi M (2011). The effect of tower height in square plan wind catcher on its thermal behavior. Australian Journal of Basic and Applied Sciences, 5(9): 381–385.

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