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VERSION:2.0
PRODID:Linklings LLC
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TZID:Asia/Hong_Kong
X-LIC-LOCATION:Asia/Hong_Kong
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TZOFFSETFROM:+0800
TZOFFSETTO:+0800
TZNAME:HKT
DTSTART:19911015T033000
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BEGIN:VEVENT
DTSTAMP:20251218T030656Z
LOCATION:Meeting Room S221\, Level 2
DTSTART;TZID=Asia/Hong_Kong:20251218T093200
DTEND;TZID=Asia/Hong_Kong:20251218T094300
UID:siggraphasia_SIGGRAPH Asia 2025_sess149_papers_1850@linklings.com
SUMMARY:Fire-X: Extinguishing Fire with Stoichiometric Heat Release
DESCRIPTION:Helge Wrede, Anton Wagner, and Sarker Miraz Mahfuz (Kiel Unive
 rsity); Wojtek Palubicki (Adam Mickiewicz University); Dominik Michels (KA
 UST); and Sören Pirk (Kiel University)\n\nWe present a combustion simulati
 on framework to model fire phenomena across solids, liquids, and gases. Ou
 r approach extends traditional fluid solvers by incorporating multi-specie
 s thermodynamics and reactive transport for fuel, oxygen, nitrogen, carbon
  dioxide, water vapor, and residuals. Combustion reactions are governed by
  stoichiometry-dependent heat release, allowing accurate simulation of pre
 mixed and diffusive flames with varying severity and composition. We suppo
 rt a wide range of scenarios including jet fires, water suppression (sprin
 klers, sprays), fuel evaporation, and starvation conditions. The system en
 ables interactive heat sources, fire detectors, and realistic rendering of
  flames (e.g., laminar-to-turbulent transitions, blue-to-orange color shif
 ts). Our key contributions include the tight coupling of species dynamics 
 with thermodynamic feedback, evaporation modeling, and a hybrid SPH-grid r
 epresentation for efficient combustion simulation. We validate our method 
 through numerous experiments, demonstrating versatility in both indoor and
  outdoor fire scenarios.\n\nRegistration Category: Full Access, Full Acces
 s Supporter\n\nSession Chair: Bo Ren (TMCC, College of Computer Science, N
 ankai University)\n\n
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