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Keywords: Fluid structure interaction
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Journal Articles
Efficient wall-modelled large eddy simulation of rotors using homogenized lattice Boltzmann methods
Available to PurchaseAdrian Kummerländer, Shota Ito, Maximilian Schecher, Davide Dapelo, Stephan Simonis, Mathias J. Krause, Fedor Bukreev
International Journal of Numerical Methods for Heat & Fluid Flow 1–25.
Published: 06 April 2026
... targeting the filtered Brinkman–Navier–Stokes equations is combined with a novel wall-model. This is implemented in the context of a platform-transparent framework for fluid-structure interaction in the open-source LBM framework OpenLB. Findings The approach is first verified for a canonical turbulent...
Journal Articles
Maximum propulsive efficiency of two pitching and plunging plates in tandem at low Reynolds number: A numerical analysis
Available to Purchase
International Journal of Numerical Methods for Heat & Fluid Flow (2019) 29 (11): 4013–4033.
Published: 03 September 2019
..., Stc is not strictly a Strouhal number, and for that reason the reduced frequency k is usually preferred in the literature). The stream speed (or flight speed) U is given through the Reynolds number: Efficiency optimization Flapping plate Fluid structure interaction Low...
Journal Articles
Numerical and experimental investigations of buffet on a diamond airfoil designed for space launcher applications
Available to Purchase
International Journal of Numerical Methods for Heat & Fluid Flow (2020) 30 (9): 4203–4218.
Published: 19 June 2019
...-dedicated launchers, with a particular interest for the fluid/structure interaction during buffeting. Experimental investigations based on Schlieren visualizations are conducted in a transonic wind tunnel and are then compared with numerical predictions based on unsteady Reynolds averaged Navier–Stokes...
Journal Articles
A direct heating immersed boundary-lattice Boltzmann method for thermal flows
Available to Purchase
International Journal of Numerical Methods for Heat & Fluid Flow (2013) 24 (1): 169–200.
Published: 20 December 2013
...=specific heat capacity CL=lift coefficient Direct forcing Direct heating Feedback forcing Fluid structure interaction Immersed boundary method Lattice Boltzmann method THETA=dimensionless temperature τf=momentum...
