We present a variant of the immersed boundary method integrated with octree meshes for highly efficient and accurate Large-Eddy Simulations (LES) of flows around complex geometries. We demonstrate the scalability of the proposed method up to O(32K) processors. This is achieved by (a) rapid in-out tests; (b) adaptive quadrature for an accurate evaluation of forces; (c) tensorized evaluation during matrix assembly. We showcase this method on two non-trivial applications: accurately computing the drag coefficient of a sphere across Reynolds numbers 1−106 encompassing the drag crisis regime; simulating flow features across a semi-truck for investigating the effect of platooning on efficiency
The method of large-eddy simulation (LES) is used increasingly to address research and engineering p...
Large-eddy simulation (LES) was originally proposed for simulating atmospheric flows in the 1960s an...
In this paper we show how the Immersed Boundary (IB) method can be used with the Large-Eddy-Simulati...
International audienceLarge-eddy simulation (LES) consists in explicitly simulating the large scales...
International audienceLarge-eddy simulation developments and validations are presented for an improv...
Large-Eddy Simulation (LES) has become a major tool for the analysis of highly turbulent flows in co...
University of Minnesota Ph.D. dissertation. December 2018. Major: Aerospace Engineering and Mechanic...
The first and most exhaustive work of its kind devoted entirely to the subject, Large Eddy Simulatio...
In the last years considerable progress has been made in the development of Large Eddy Simulation (L...
AbstractA large eddy simulation (LES) of the flows around an underwater vehicle model at intermediat...
The paper presents a novel implementation of the embedded boundary algorithm in a Large Eddy Simulat...
NASA’s 2030 CFD Vision calls for the development of accurate and efficient scale-resolving simulatio...
A large-eddy simulation (LES) code was developed at the NASA Glenn Research Center to provide more a...
This paper introduces and discusses numerical methods for free-surface flow simulations and applies ...
High-fidelity Large-Eddy Simulation (LES) of fluid flow over complex terrain has long been a challe...
The method of large-eddy simulation (LES) is used increasingly to address research and engineering p...
Large-eddy simulation (LES) was originally proposed for simulating atmospheric flows in the 1960s an...
In this paper we show how the Immersed Boundary (IB) method can be used with the Large-Eddy-Simulati...
International audienceLarge-eddy simulation (LES) consists in explicitly simulating the large scales...
International audienceLarge-eddy simulation developments and validations are presented for an improv...
Large-Eddy Simulation (LES) has become a major tool for the analysis of highly turbulent flows in co...
University of Minnesota Ph.D. dissertation. December 2018. Major: Aerospace Engineering and Mechanic...
The first and most exhaustive work of its kind devoted entirely to the subject, Large Eddy Simulatio...
In the last years considerable progress has been made in the development of Large Eddy Simulation (L...
AbstractA large eddy simulation (LES) of the flows around an underwater vehicle model at intermediat...
The paper presents a novel implementation of the embedded boundary algorithm in a Large Eddy Simulat...
NASA’s 2030 CFD Vision calls for the development of accurate and efficient scale-resolving simulatio...
A large-eddy simulation (LES) code was developed at the NASA Glenn Research Center to provide more a...
This paper introduces and discusses numerical methods for free-surface flow simulations and applies ...
High-fidelity Large-Eddy Simulation (LES) of fluid flow over complex terrain has long been a challe...
The method of large-eddy simulation (LES) is used increasingly to address research and engineering p...
Large-eddy simulation (LES) was originally proposed for simulating atmospheric flows in the 1960s an...
In this paper we show how the Immersed Boundary (IB) method can be used with the Large-Eddy-Simulati...