Optimization of Cell Spaces Simulation for the Modeling of Fire Spreading

  • Authors:
  • Alexandre Muzy;Eric Innocenti;Jean-François Santucci;David R. C. Hill

  • Affiliations:
  • -;-;-;-

  • Venue:
  • ANSS '03 Proceedings of the 36th annual symposium on Simulation
  • Year:
  • 2003

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Abstract

This paper presents a simulation performance improvementof the application of the Multicomponent Discrete TimeSystem Specification (MultiDTSS) formalism to a firespread. Multicomponent choice is explained through bothMulticomponent systems and networks of systems criticalstudy for cell spaces modeling and simulation. A new functionhas been appended to the MultiDTSS formalism toachieve the Active MultiDTSS formalism extension. Thisfunction allows reducing the calculation domain of diffusionproblems to active cells thus reducing execution time.The two formalisms have been implemented and are comparedwith a qualitative and quantitative analysis.