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Peter Apian-Bennewitz

Publications and source records attributed to Peter Apian-Bennewitz.

2 recordsLinked to original sources

Design and Construction of a Device for Measuring Light-Scattering on Anisotropic Materials

This is my English translation of my diploma thesis of 1990 (in German). A translation seemed a worthwhile venture because this diploma thesis appears to be unknown today even to close collaborators. Yet it introduces some ideas in BSDF measurements that are still relevant in 2021. This text describes the construction of a device for the optical characterisation of scattering, inhomogeneous, anisotropic media. It measures the transmission and reflexion dependent on two outgoing and two incoming angles, integral over a spectral range from 400 nm to 700 nm. The sample size is 40 x 40 x 10 [cm]. Besides transmission and reflexion values, the scattering characteristic BSDF and absorption can also be determined. The description focuses on the mechanical layout, data acquisition and visualisation of the data. The equipment control with a UNIX workstation and VME bus are detailed. The theoretical part of this thesis gives a simple model for the material scattering characteristic BSDF.

physics.ins-det

Review of simulating four classes of window materials for daylighting with non-standard BSDF using the simulation program Radiance

This review describes the currently available simulation models for window material to calculate daylighting with the program "Radiance". The review is based on four abstract and general classes of window materials, depending on their scattering and redirecting properties (bidirectional scatter distribution function, BSDF). It lists potential and limits of the older models and includes the most recent additions to the software. All models are demonstrated using an exemplary indoor scene and two typical sky conditions. It is intended as clarification for applying window material models in project work or teaching. The underlying algorithmic problems apply to all lighting simulation programs, so the scenarios of materials and skies are applicable to other lighting programs.

physics.comp-ph