Lagrangian Fluid Simulation Using Continuous Convolutions π
Explore ICLR 2020's approach to fluid simulation with continuous convolutions, enhancing accuracy in Lagrangian models.

Nils Thuerey
4.5K views β’ May 2, 2020

About this video
This is the video for the ICLR 2020 paper "Lagrangian Fluid Simulation with Continuous Convolutions", by B. Ummenhofer, L. Prantl, N. Thuerey, V. Koltun. Code & paper: https://github.com/intel-isl/DeepLagrangianFluids
Abstract: We present an approach to Lagrangian fluid simulation with a new type of convo- lutional network. Our networks process sets of moving particles, which describe fluids in space and time. Unlike previous approaches, we do not build an ex- plicit graph structure to connect the particles but use spatial convolutions as the main differentiable operation that relates particles to their neighbors. To this end we present a simple, novel, and effective extension of N-D convolutions to the continuous domain. We show that our network architecture can simulate differ- ent materials, generalizes to arbitrary collision geometries, and can be used for inverse problems. In addition, we demonstrate that our continuous convolutions outperform prior formulations in terms of accuracy and speed.
Abstract: We present an approach to Lagrangian fluid simulation with a new type of convo- lutional network. Our networks process sets of moving particles, which describe fluids in space and time. Unlike previous approaches, we do not build an ex- plicit graph structure to connect the particles but use spatial convolutions as the main differentiable operation that relates particles to their neighbors. To this end we present a simple, novel, and effective extension of N-D convolutions to the continuous domain. We show that our network architecture can simulate differ- ent materials, generalizes to arbitrary collision geometries, and can be used for inverse problems. In addition, we demonstrate that our continuous convolutions outperform prior formulations in terms of accuracy and speed.
Video Information
Views
4.5K
Likes
82
Duration
5:27
Published
May 2, 2020
User Reviews
4.6
(4) Related Trending Topics
LIVE TRENDSRelated trending topics. Click any trend to explore more videos.
Trending Now