Robust eulerian-on-lagrangian rods
Rosa María Sánchez-Banderas, Alejandro Rodríguez, Héctor Barreiro, Miguel A. Otaduy
Abstract
Fig. 1. Simulation of three yarn-level tablecloths stacked on top of each other. We handle both intra-fabric and inter-fabric contacts implicitly with our novel Eulerian-on-Lagrangian (EoL) simulation. Frictional contact is correctly handled, even under extreme sliding and crossing of yarns. We introduce novel EIL nodes to handle robustly pervasive degeneracies in the discretization. The rightmost image shows the soup of nodes around the edge of the table. White dots represent contacts between standard EoL nodes, red dots contacts between our novel EIL nodes, and pink dots contacts between EoL and EIL nodes.
This paper introduces a method to simulate complex rod assemblies and stacked layers with implicit contact handling, through Eulerian-on-Lagrangian (EoL) discretizations. Previous EoL methods fail to handle such complex situations, due to ubiquitous and intrinsic degeneracies in the contact geometry, which prevent the use of remeshing and make simulations unstable. We propose a novel mixed Eulerian-Lagrangian discretization that supports accurate and efficient contact as in EoL methods, but is transparent to internal rod forces, and hence insensitive to degeneracies. By combining the standard and novel EoL discretizations as appropriate, we derive mixed statics-dynamics equations of motion that can be solved in a unified manner with standard solvers. Our solution is simple and elegant in practice, and produces robust simulations on large-scale scenarios with complex rod arrangements and pervasive degeneracies. We demonstrate our method on multi-layer yarn-level cloth simulations, with implicit handling of both intraand inter-layer contacts.
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 0cb12cc1-2ab1-404b-8123-01ca6bbdff78Cited by top-tier papers3
- Fine-grained Differentiable Physics: A Yarn-level Model for FabricsDeshan Gong, Zhanxing Zhu, Andrew J. Bulpitt, He WangICLR 2022 · 11 citations
- Contact detection between curved fibres: high order makes a differenceOctave Crespel, Emile Hohnadel, Thibaut Metivet, Florence Bertails-DescoubesSIGGRAPH 2024 · 10 citations
- Neural-Assisted Homogenization of Yarn-Level ClothXudong Feng, Huamin Wang, Yin Yang, Weiwei XuSIGGRAPH 2024 · 9 citations
Related papers
- Simple and scalable frictional contacts for thin nodal objectsGilles DavietSIGGRAPH 2020 · 50 citations
- Projective dynamics with dry frictional contactMickaël Ly, Jean Jouve, Laurence Boissieux, Florence Bertails-DescoubesSIGGRAPH 2020 · 63 citations
- A Dynamic Duo of Finite Elements and Material PointsXuan Li, Minchen Li, Xuchen Han, Huamin Wang et al.SIGGRAPH 2024 · 8 citations
- Mechanics-aware deformation of yarn pattern geometryGeorg Sperl, Rahul Narain, Chris WojtanSIGGRAPH 2021 · 18 citations
- Interactive Hair Simulation on the GPU using ADMMGilles DavietSIGGRAPH 2023 · 18 citations
