A fast Chebyshev method for the Bingham closure with application to active nematic suspensions
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Publication:2135792
DOI10.1016/j.jcp.2021.110937OpenAlexW3175223679MaRDI QIDQ2135792
David B. Stein, Scott Weady, Michael J. Shelley
Publication date: 9 May 2022
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2106.14817
Numerical approximation and computational geometry (primarily algorithms) (65Dxx) Fluid mechanics (76-XX) Applications of statistical mechanics to specific types of physical systems (82Dxx)
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Cites Work
- Local well-posedness and small Deborah limit of a molecule-based \(Q\)-tensor system
- An antipodally symmetric distribution on the sphere
- The shear flow behavior of LCPs based on a generalized Doi model with distortional elasticity
- Statistical hydrodynamics of ordered suspensions of self-propelled particles: Waves, giant number fluctuations and instabilities
- A fast algorithm for the moments of Bingham distribution
- Computational mean-field modeling of confined active fluids
- Efficient spectral methods for quasi-equilibrium closure approximations of symmetric problems on unit circle and sphere
- From microscopic theory to macroscopic theory: a systematic study on modeling for liquid crystals
- EFFICIENT NUMERICAL DIAGONALIZATION OF HERMITIAN 3 × 3 MATRICES
- Pressure-driven channel flows of a model liquid-crystalline polymer
- Entropy-based moment closures for kinetic equations
- Some Recent Developments in Turbulence Closure Modeling
- An Extension of MATLAB to Continuous Functions and Operators
- Dynamics and structure of an apolar active suspension in an annulus
- A Nonhomogeneous Kinetic Model of Liquid Crystal Polymers and Its Thermodynamic Closure Approximation
- Instabilities, pattern formation, and mixing in active suspensions
- An Extension of Chebfun to Two Dimensions
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