Convex-based void filling method for CAD-based Monte Carlo geometry modeling

•We present a new void filling method named CVF for CAD based MC geometry modeling.•We describe convex based void description based and quality-based space subdivision.•The results showed improvements provided by CVF for both modeling and MC calculation efficiency. CAD based automatic geometry model...

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Veröffentlicht in:Annals of nuclear energy 2015-11, Vol.85, p.380-385
Hauptverfasser: Yu, Shengpeng, Cheng, Mengyun, Song, Jing, Long, Pengcheng, Hu, Liqin
Format: Artikel
Sprache:eng
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Zusammenfassung:•We present a new void filling method named CVF for CAD based MC geometry modeling.•We describe convex based void description based and quality-based space subdivision.•The results showed improvements provided by CVF for both modeling and MC calculation efficiency. CAD based automatic geometry modeling tools have been widely applied to generate Monte Carlo (MC) calculation geometry for complex systems according to CAD models. Automatic void filling is one of the main functions in the CAD based MC geometry modeling tools, because the void space between parts in CAD models is traditionally not modeled while MC codes such as MCNP need all the problem space to be described. A dedicated void filling method, named Convex-based Void Filling (CVF), is proposed in this study for efficient void filling and concise void descriptions. The method subdivides all the problem space into disjointed regions using Quality based Subdivision (QS) and describes the void space in each region with complementary descriptions of the convex volumes intersecting with that region. It has been implemented in SuperMC/MCAM, the Multiple-Physics Coupling Analysis Modeling Program, and tested on International Thermonuclear Experimental Reactor (ITER) Alite model. The results showed that the new method reduced both automatic modeling time and MC calculation time.
ISSN:0306-4549
1873-2100
DOI:10.1016/j.anucene.2015.04.029