A validation of a ray-tracing tool used to generate bi-directional scattering distribution functions for complex fenestration systems

Author:

McNeil A.,Jonsson C.J.,Appelfeld D.,Ward G.,Lee E.S.

Funder

Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Building Technology, State and Community Programs, Office of Building Research and Standards of the US Department of Energy

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference23 articles.

1. Goniophotometry and assessment of bi-directional photometric properties of complex fenestration systems;Andersen;Energy and Buildings,2006

2. Experimental assessment of bi-directional transmission distribution functions using digital imaging techniques;Andersen;Energy and Buildings,2001

3. Comparison between ray-tracing simulations and bi-directional transmission measurements on prismatic glazing;Andersen;Solar Energy,2003

4. Bi-directional transmission properties of Venetian blinds: experimental assessment compared to ray-tracing calculations;Andersen;Solar Energy,2005

5. Apian-Bennewitz, P., 2013, Review of simulating four classes of window materials for daylighting with non-standard BSDF using the simulation program Radiance, arXiv:1307.4214 [physics.comp-ph]. . (accessed 09.11.13).

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