BEGIN:VCALENDAR VERSION:2.0 PRODID:Linklings LLC BEGIN:VTIMEZONE TZID:America/Los_Angeles X-LIC-LOCATION:America/Los_Angeles BEGIN:DAYLIGHT TZOFFSETFROM:-0800 TZOFFSETTO:-0700 TZNAME:PDT DTSTART:19700308T020000 RRULE:FREQ=YEARLY;BYMONTH=3;BYDAY=2SU END:DAYLIGHT BEGIN:STANDARD TZOFFSETFROM:-0700 TZOFFSETTO:-0800 TZNAME:PST DTSTART:19701101T020000 RRULE:FREQ=YEARLY;BYMONTH=11;BYDAY=1SU END:STANDARD END:VTIMEZONE BEGIN:VEVENT DTSTAMP:20260417T190055Z LOCATION:West Building\, Rooms 220-222 DTSTART;TZID=America/Los_Angeles:20250814T104500 DTEND;TZID=America/Los_Angeles:20250814T121500 UID:siggraph_SIGGRAPH 2025_sess136@linklings.com SUMMARY:Unconventional Fluids DESCRIPTION:Unconventional Fluids - Interactive Discussion\n\nAfter the su mmary presentations, attendees will participate in an interactive discussi on. Outside the room will be a series of poster boards for authors to gath er around with the audience. Authors are invited to bring any material rel ated to their paper that could instigate further conversation such...\n\n- --------------------\nUnified Pressure, Surface Tension and Friction for S PH Fluids\n\nWe present a new SPH approach to replicate the behavior of dr oplets and other smaller scale fluid bodies. For this, we develop a new im plicit surface tension formulation and implement a Coulomb friction force at the fluid-solid interface. A strong coupling between both forces and pr essure is achieve...\n\n\nTimo Probst and Matthias Teschner (University of Freiburg) and Timo Probst\n---------------------\nDigital Animation of Po wder-Snow Avalanches\n\nPowder-snow avalanches are natural phenomena that result from an instability in the snow cover on a mountain relief. This pa per introduces a physically-based framework to simulate powder-snow avalan ches under complex terrains, allowing us to animate the turbulent snow clo ud dynamics within the avala...\n\n\nFilipe Nascimento, Fabricio S. Sousa, and Afonso Paiva (Universidade de São Paulo - USP)\n--------------------- \nArenite: A Physics-based Sandstone Simulator\n\nArenite is a novel, phys ics-based simulation method for generating realistic sandstone structures. It combines fabric interlocking, multi-factor erosion, and particle-based deposition. Our GPU-based implementation produces detailed 3D shapes such as arches, alcoves, hoodoos, and buttes in minutes an...\n\n\nZhanyu Yang (Purdue University); Aryamaan Jain and Guillaume Cordonnier (Inria, Unive rsité Côte d'Azur); Marie-Paule Cani (Centre National de la Recherche Scie ntifique - Laboratoire d'informatique de l'École Polytechnique (LIX), Inst itut Polytechnique de Paris); and Zhaopeng Wang and Bedrich Benes (Purdue University)\n---------------------\nControllable Complex Freezing Dynamics Simulation on Thin Films\n\nWe present a physics-based method for simulat ing intricate freezing dynamics on thin films. Our novel Phase Map method integrated with MELP particles reproduces Marangoni freezing dynamics and the "Snow-Globe Effect". The framework captures soap bubble freezing dynam ics while ensuring stability in c...\n\n\nYijie Liu (TMCC, College of Comp uter Science, Nankai University); Taiyuan Zhang (Dartmouth College; TMCC, College of Computer Science, Nankai University); and Xiaoxiao Yan, Nuoming Liu, and Bo Ren (TMCC, College of Computer Science, Nankai University)\n- --------------------\nA Hybrid Near-wall Model for Kinetic Simulation of T urbulent Boundary Layer Flows\n\nWe present an innovative hybrid near-wall model for the multi-resolution lattice Boltzmann solver to effectively en able simulations of high Reynolds number turbulent boundary layer flows. F or the first time, it strikes an excellent balance between the precision d emanded by industrial computational d...\n\n\nMengyun Liu, Kai Bai, and Xi aopei Liu (ShanghaiTech University)\n---------------------\nCK-MPM: A Comp act-Kernel Material Point Method\n\nWe introduce a compact, C2-continuous kernel for MPM that reduces numerical diffusion and improves efficiency—wi thout sacrificing stability. Built on a dual-grid framework and compatible with APIC and MLS, our method enables high-fidelity, large-scale simulati ons, further pushing the limits of...\n\n\nMichael Liu (Carnegie Mellon Un iversity), Xinlei Wang (NetEase Games Messiah Engine), and Minchen Li (Car negie Mellon University)\n\nInterest Area: Research & Education\n\nRecordi ng: Livestreamed, Not Livestreamed, Recorded, Not Recorded\n\nRegistration Category: Full Conference, Virtual Access, Thursday\n\nSession Chair: Cem Yuksel (University of Utah, Cyber Radiance) END:VEVENT END:VCALENDAR