FluidNexus: 3D Fluid Reconstruction and Prediction from a Single Video

Abstract

We study reconstructing and predicting 3D fluid appearance and velocity from a single video. Current methods require multi-view videos for fluid reconstruction. We present FluidNexus, a novel framework that bridges video generation and physics simulation to tackle this task. Our key insight is to synthesize multiple novel-view videos as references for reconstruction. FluidNexus consists of two key components: (1) a novel-view video synthesizer that combines frame-wise view synthesis with video diffusion refinement for generating realistic videos, and (2) a physics-integrated particle representation coupling differentiable simulation and rendering to simultaneously facilitate 3D fluid reconstruction and prediction. To evaluate our approach, we collect two new real-world fluid datasets featuring textured backgrounds and object interactions. Our method enables dynamic novel view synthesis, future prediction, and interaction simulation from a single fluid video. Project website: https://yuegao.me/FluidNexus.

Cite

Text

Gao et al. "FluidNexus: 3D Fluid Reconstruction and Prediction from a Single Video." Conference on Computer Vision and Pattern Recognition, 2025. doi:10.1109/CVPR52734.2025.02430

Markdown

[Gao et al. "FluidNexus: 3D Fluid Reconstruction and Prediction from a Single Video." Conference on Computer Vision and Pattern Recognition, 2025.](https://mlanthology.org/cvpr/2025/gao2025cvpr-fluidnexus/) doi:10.1109/CVPR52734.2025.02430

BibTeX

@inproceedings{gao2025cvpr-fluidnexus,
  title     = {{FluidNexus: 3D Fluid Reconstruction and Prediction from a Single Video}},
  author    = {Gao, Yue and Yu, Hong-Xing and Zhu, Bo and Wu, Jiajun},
  booktitle = {Conference on Computer Vision and Pattern Recognition},
  year      = {2025},
  pages     = {26091-26101},
  doi       = {10.1109/CVPR52734.2025.02430},
  url       = {https://mlanthology.org/cvpr/2025/gao2025cvpr-fluidnexus/}
}