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Updated: May 29, 2026

Quantifying Mixing using Magnetic Resonance Imaging
Published on: January 25, 2012
Numerical evidence of mixing in rooms using the free path temporal distribution
Alexis Billon1, Jean-Jacques Embrechts
1Department of Electrical Engineering and Computer Science, INTELSIG, University of Liège, Sart-Tilman B28, B-4000 Liège, Belgium. abillon@ulg.ac.be
Abstract:
The ergodic propriety of a room has strong effects on its reverberation. If the room is ergodic, the reverberation can be broken up in two steps: a deterministic process followed by a stochastic one. The late reverberation can be then modeled by a reverberation algorithm instead of more computationally consuming methods. In this study, the free path temporal distribution obtained by ray-tracing is used as an indicator of the room's mixing: the energetic average of the path lengths is computed at each time step. Ergodic rooms are thus characterized by rapidly convergent distributions. The free path value becomes independent of time. On the other hand, path selection mechanism and orbits are observed in non-ergodic rooms. The transition time from the deterministic process to the stochastic one is also studied through the evaluation of the room's time constant. It is shown that its value depends only on the mean free path and the boundaries scattering value. An empirical expression is obtained which agrees well with simulations carried out in a concert hall. This transition time from a deterministic model to a stochastic one can be used to speed up the acoustical predictions and auralizations in ergodic rooms.
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