Lagrangian stochastic model for the orientation of inertialess spheroidal particles in turbulent flows: an efficient numerical method for CFD approach
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Publication:6100097
DOI10.1016/j.compfluid.2023.105870zbMath1521.76877arXiv2211.10211OpenAlexW4353094817MaRDI QIDQ6100097
Lorenzo Campana, Christophe Henry, Mireille Bossy
Publication date: 21 June 2023
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2211.10211
turbulent flowsplitting schemespheroidangular displacementpoint-particle approximationLagrangian stochastic modeling
Numerical solutions to stochastic differential and integral equations (65C30) Granular flows (76T25)
Cites Work
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- Statistical descriptions of polydisperse turbulent two-phase flows
- Papermaking fibre-suspension flow simulations at multiple scales
- The development and interaction of terrorist and fanatic groups
- Numerical probability. An introduction with applications to finance
- A splitting method for SDEs with locally Lipschitz drift: illustration on the FitzHugh-Nagumo model
- A note on the exact simulation of spherical Brownian motion
- On the weak convergence rate of an exponential Euler scheme for SDEs governed by coefficients with superlinear growth
- An immersed boundary method with direct forcing for the simulation of particulate flows
- Orientation dynamics of small, triaxial–ellipsoidal particles in isotropic turbulence
- Local dissipation scales and energy dissipation-rate moments in channel flow
- Anisotropic Particles in Turbulence
- Algorithm for generating a Brownian motion on a sphere
- Impact of shape: DNS of sediment transport with non-spherical particles
- Orientation, distribution, and deposition of elongated, inertial fibers in turbulent channel flow
- Brownian Motion on a Hypersurface
- The motion of rigid particles in a shear flow at low Reynolds number
- Turbulent Flows
- Brownian motion on a sphere: distribution of solid angles
- A closure for Lagrangian velocity gradient evolution in turbulence using recent-deformation mapping of initially Gaussian fields
- Predicting viscous-range velocity gradient dynamics in large-eddy simulations of turbulence
- Dynamics of prolate ellipsoidal particles in a turbulent channel flow
- On the evolution of material lines and vorticity in homogeneous turbulence
- Why spheroids orient preferentially in near-wall turbulence
- Dynamics of Flexible Fibers in Viscous Flows and Fluids
- Fluid Mechanics of Papermaking
- Lagrangian Dynamics and Models of the Velocity Gradient Tensor in Turbulent Flows
- Collective Hydrodynamics of Swimming Microorganisms: Living Fluids
- Ellipsoidal particles transport and deposition in turbulent channel flows
- Geometric Numerical Integration
- Rotational and translational dispersion of fibres in isotropic turbulent flows
- The pdf approach to turbulent polydispersed two-phase flows
- Stochastic differential equations. An introduction with applications.
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