Eulerian-Lagrangian Fluid Simulation on Particle Flow Maps
Junwei Zhou, Duowen Chen, Molin Deng, Yitong Deng, Yuchen Sun, Sinan Wang, Shiying Xiong, Bo Zhu
Abstract
We propose a novel Particle Flow Map (PFM) method to enable accurate long-range advection for incompressible fluid simulation. The foundation of our method is the observation that a particle trajectory generated in a forward simulation naturally embodies a perfect flow map. Centered on this concept, we have developed an Eulerian-Lagrangian framework comprising four essential components: Lagrangian particles for a natural and precise representation of bidirectional flow maps; a dual-scale map representation to accommodate the mapping of various flow quantities; a particle-to-grid interpolation scheme for accurate quantity transfer from particles to grid nodes; and a hybrid impulse-based solver to enforce incompressibility on the grid. The efficacy of PFM has been demonstrated through various simulation scenarios, highlighting the evolution of complex vortical structures and the details of turbulent flows. Notably, compared to NFM, PFM reduces computing time by up to 49 times and memory consumption by up to 41%, while enhancing vorticity preservation as evidenced in various tests like leapfrog, vortex tube, and turbulent flow.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 138809db-d37f-4718-821d-403923d3949fCited by top-tier papers10
- Fluid Simulation on Vortex Particle Flow MapsSinan Wang, Junwei Zhou, Fan Feng, Zhiqi Li et al.SIGGRAPH 2025 · 5 citations
- Fluid Simulation on Compressible Flow MapsDuowen Chen, Zhiqi Li, Taiyuan Zhang, Jinjin He et al.SIGGRAPH 2025 · 5 citations
- Cirrus: Adaptive Hybrid Particle-Grid Flow Maps on GPUMengdi Wang, Fan Feng, Junlin Li, Bo ZhuSIGGRAPH 2025 · 4 citations
- Leapfrog Flow Maps for Real-Time Fluid SimulationYuchen Sun, Junlin Li, Ruicheng Wang, Sinan Wang et al.SIGGRAPH 2025 · 2 citations
- EDGE: Epsilon-Difference Gradient Evolution for Buffer-Free Flow MapsZhiqi Li, Ruicheng Wang, Junlin Li, Duowen Chen et al.SIGGRAPH 2025 · 1 citation
Builds on9
- 3D Gaussian Splatting for Real-Time Radiance Field RenderingBernhard Kerbl, Georgios Kopanas, Thomas Leimkühler, George DrettakisSIGGRAPH 2023 · 5,687 citations
- Revisiting integration in the material point method: a scheme for easier separation and less dissipationYun (Raymond) Fei, Qi Guo, Rundong Wu, Li Huang et al.SIGGRAPH 2021 · 51 citations
- IQ-MPM: an interface quadrature material point method for non-sticky strongly two-way coupled nonlinear solids and fluidsYu Fang, Ziyin Qu, Minchen Li, Xinxin Zhang et al.SIGGRAPH 2020 · 49 citations
- Covector fluidsMohammad Sina Nabizadeh, Stephanie Wang, Ravi Ramamoorthi, Albert ChernSIGGRAPH 2022 · 39 citations
- The power particle-in-cell methodZiyin Qu, Minchen Li, Fernando de Goes, Chenfanfu JiangSIGGRAPH 2022 · 38 citations
Related papers
- Lagrangian Covector Fluid with Free SurfaceZhiqi Li, Barnabás Börcsök, Duowen Chen, Yutong Sun et al.SIGGRAPH 2024 · 4 citations
- Clebsch Gauge Fluid on Particle Flow MapsZhiqi Li, Candong Lin, Duowen Chen, Xinyi Zhou et al.SIGGRAPH 2025 · 1 citation
- DiffSurFlow: Efficient and Robust Differentiable Fluid Optimization via Surrogate Strategy on Flow MapYuhao Quan, Hui Wang, Weile Lian, Zhi Wang et al.SIGGRAPH 2026
- Fast VEM Fluid SimulationRunze Zhang, Bo RenSIGGRAPH 2026
- Stream-guided smoke simulationsSyuhei Sato, Yoshinori Dobashi, Theodore KimSIGGRAPH 2021 · 21 citations
