Wind-tunnel simulations of wind influence on snow load distribution on roofs

Author:

Kimbar GrzegorzORCID

Abstract

The paper summarizes the problem of snow load prediction on building roofs, the importance of wind action in context of this load and the scope of wind tunnel applications in such research with more detailed description of experimental stand in Cracow University of Technology. Author reports the scope of experimental and theoretical research on snow load carried out over the years 2004-2012 in the boundary layer wind tunnel located at Wind Engineering Laboratory CUT. The research were conducted in the course of design processes on three models of arena-like buildings with large roofs, and one research on more general flat roof building.

Publisher

Politechnika Lubelska

Subject

Earth-Surface Processes

Reference7 articles.

1. Tabler R.D. Self-similarity of wind profiles in blowing snow allows outdoor modeling. Journal of Glaciology, vol. 26, Issue 94 (1980) 421-434.

2. Thiis T.K. Experimental validations of numerical simulations of snowdrift around buldings and in terrain. Narvik Institiute of Technology 2000.

3. Iversen J.D. Drifting snow similitude. Journal of the hydraulics division (1979) 737-753.

4. Flaga A., Kimbar G., Matys P. A new approach to wind tunnel similarity criteria for snow load prediction with an exemplary application of football stadium roof. Proc. of European-African Conference on Wind Engineering 5 (2009).

5. Kwok K.C.S., Kim D.H., Smedley D.J., Rohde H.F. Snowdrift around buildings for antarctic environment. Journal of Wind Engineering and Industrial Aerodynamics 41-44 (1992) 2797-2808.

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