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Conformation Constraints for Efficient Viscoelastic Fluid Simulation

delete2017-11-20
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H
Héctor Barreiro *
I
Ignacio García‐Fernández
M
Miguel Á. Otaduy
DOI:10.1145/3130800.3130854delete
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Abstract

Abstract

En 中文
The simulation of high viscoelasticity poses important computational challenges. One is the difficulty to robustly measure strain and its derivatives in a medium without permanent structure. Another is the high stiffness of the governing differential equations. Solutions that tackle these challenges exist, but they are computationally slow. We propose a constraint-based model of viscoelasticity that enables efficient simulation of highly viscous and viscoelastic phenomena. Our model reformulates, in a constraint-based fashion, a constitutive model of viscoelasticity for polymeric fluids, which defines simple governing equations for a conformation tensor. The model can represent a diverse palette of materials, spanning elastoplastic, highly viscous, and inviscid liquid behaviors. In addition, we have designed a constrained dynamics solver that extends the position-based dynamics method to handle efficiently both position-based and velocity-based constraints. We show results that range from interactive simulation of viscoelastic effects to large-scale simulation of high viscosity with competitive performance.
Keywords:
Position Based Dynamics
Positon Based Fluids
Viscoelastic Fluid
High Viscosity
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Journal

ACM Transactions on Graphics cover
ACM Transactions on Graphics
IF:
9.5
Papers:
4.7K
Citations:
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U
Universidad Rey Juan Carlos
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U
University of Valencia
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Citations: 24