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TZID:Asia/Hong_Kong
X-LIC-LOCATION:Asia/Hong_Kong
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DTSTART:19911015T033000
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DTSTAMP:20251218T030516Z
LOCATION:Meeting Room S221\, Level 2
DTSTART;TZID=Asia/Hong_Kong:20251218T090000
DTEND;TZID=Asia/Hong_Kong:20251218T100500
UID:siggraphasia_SIGGRAPH Asia 2025_sess149@linklings.com
SUMMARY:Advanced Fluid and Multiphase Simulation
DESCRIPTION:The Technical Papers program is the heartbeat of SIGGRAPH Asia
 , spotlighting world-class scholarly research at the forefront of computer
  graphics and interactive techniques. For decades, it has been the definit
 ive venue where bold ideas take root, foundational concepts are reimagined
 , and the future of visual computing is shaped.\n\nThis year, we explore n
 ew intersections of algorithms and artistry, automation and authorship, to
 ols and imagination – challenging the very way we design, simulate, visual
 ize, and interact with digital worlds.\n\nWavelet Fluids\n\nThis paper pre
 sents a novel wavelet-based framework for simulating single-phase (e.g., s
 moke) and two-phase (e.g., bubbly water) flows, featuring unified boundary
  condition handling for free surfaces and solid obstacles.\nIn liquid simu
 lations, conventional pressure projection methods solve a simplif...\n\n\n
 Luan Lyu (Guangdong University of Technology); Xiaohua Ren (WeChat Vision,
  Tencent Inc.); Wei Cao (Qingdao University); Jian Zhu (Guangdong Universi
 ty of Technology); Ziyang Ma (WeChat Vision, Tencent Inc.); and Enhua Wu (
 Key Laboratory of System Software (Chinese Academy of Sciences) and SKLCS,
  Institute of Software, Chinese Academy of Sciences, China; University of 
 Macau)\n---------------------\nImplicit Incompressible Porous Flow using S
 PH\n\nWe present a novel implicit porous flow solver using SPH, which main
 tains fluid incompressibility and is able to model a wide range of scenari
 os, driven by strongly coupled solid-fluid interaction forces. Many previo
 us SPH porous flow methods reduce particle volumes as they transition acro
 ss the sol...\n\n\nTimna Böttcher, Lukas Westhofen, Stefan Rhys Jeske, and
  Jan Bender (RWTH Aachen University)\n---------------------\nThe Granule-I
 n-Cell Method for Simulating Sand--Water Mixtures\n\nThe simulation of san
 d--water mixtures requires capturing the stochastic behavior of individual
  sand particles within a uniform, continuous fluid medium.\nHowever, most 
 existing approaches, which only treat sand particles as markers within flu
 id solvers, fail to account for both the forces acting on ...\n\n\nYizao T
 ang (School of Electronics Engineering and Computer Science, Peking Univer
 sity); Yuechen Zhu (Mathematical Institute, University of Oxford); Xingyu 
 Ni (The University of Hong Kong); and Baoquan Chen (State Key Laboratory o
 f General Artificial Intelligence, Peking University)\n-------------------
 --\nMultiphase Particle-Based Simulation of Poro-Elasto-Capillary Effects\
 n\nSimulating the interactions between fluids and porous media has attract
 ed significant attention in computer graphics. A key challenge in this dom
 ain is modeling the Poro-Elasto-Capillary (PEC) coupling effect which desc
 ribes the intricate interplay of three physical phenomena in soft porous m
 aterial...\n\n\nRuolan Li (University of Science and Technology Beijing), 
 Yanrui Xu (Tsinghua University), Yalan Zhang (University of Science and Te
 chnology Beijing), Jiri Kosinka (University of Groningen), Alexandru C. Te
 lea (Utrecht University), Jian Chang and Jian Jun Zhang (Bournemouth Unive
 rsity), and Xiaojuan Ban and Xiaokun Wang (University of Science and Techn
 ology Beijing)\n---------------------\nFire-X: Extinguishing Fire with Sto
 ichiometric Heat Release\n\nWe present a combustion simulation framework t
 o model fire phenomena across solids, liquids, and gases. Our approach ext
 ends traditional fluid solvers by incorporating multi-species thermodynami
 cs and reactive transport for fuel, oxygen, nitrogen, carbon dioxide, wate
 r vapor, and residuals. Combusti...\n\n\nHelge Wrede, Anton Wagner, and Sa
 rker Miraz Mahfuz (Kiel University); Wojtek Palubicki (Adam Mickiewicz Uni
 versity); Dominik Michels (KAUST); and Sören Pirk (Kiel University)\n-----
 ----------------\nKinetic Free-Surface Flows and Foams with Sharp Interfac
 es\n\nKinetic multiphase flow solvers have recently demonstrated exquisite
 ly complex and turbulent fluid phenomena involving splashing and bubbling.
  However, they require full simulation of both the liquid phase and the ai
 r to capture a large spectrum of fluid behaviors. Moreover, they rely on d
 iffuse int...\n\n\nHaoxiang Wang (Department of Automation, Tsinghua Unive
 rsity); Kui Wu (LightSpeed Studios); Hui Qiao (Department of Automation, T
 singhua University); Mathieu Desbrun (INRIA, Ecole Polytechnique); and Wei
  Li (John Hopcroft Center for Computer Science, School of Computer Science
 , SJTU)\n\nRegistration Category: Full Access, Full Access Supporter\n\nSe
 ssion Chair: Bo Ren (TMCC, College of Computer Science, Nankai University)
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