A new parallel implicit adaptive mesh refinement (AMR) algorithm is developed for the prediction of unsteady behaviour of laminar flames. The scheme is applied to the solution of the system of partial-differential equations governing time-dependent, two- and three-dimensional, compressible laminar flows for reactive thermally perfect gaseous mixtures. A high-resolution finite-volume spatial discretization procedure is used to solve the conservation form of these equations on body-fitted multi-block hexahedral meshes. A local preconditioning technique is used to remove numerical stiffness and maintain solution accuracy for low-Mach-number, nearly incompressible flows. A flexible block-based octree data structure has been developed an...
Abstract. We describe recent developments in the design and implementation of finite element methods...
The local adaptive mesh refinement (AMR) platform written at ONERA by M. Borrel et al. [1],[2],[3], ...
A three-dimensional, parallel, anisotropic, block-based, adaptive mesh refinement (AMR) algorithm is...
A new parallel implicit adaptive mesh refinement (AMR) algorithm is developed for the prediction of ...
Abstract: A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predict...
A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predictions of ...
A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predictions of ...
A parallel adaptive mesh refinement (AMR) algorithm is described for predicting tur-bulent non-premi...
A solution-adaptive Navier-Stokes technique is presented which incorporates a fully implicit solutio...
We describe recent developments in the design and implementation of finite element methods for the c...
A parallel implicit adaptive-mesh-refinement scheme is proposed for the solution of the Navier-Stoke...
During the past two decades, the steady increase in the power of parallel super-computers participat...
During the past two decades, the steady increase in the power of parallel super-computers participat...
Capturing the effects of detailed-chemistry on turbulent combustion processes is a central challenge...
Capturing the effects of detailed-chemistry on turbulent combustion processes is a central challenge...
Abstract. We describe recent developments in the design and implementation of finite element methods...
The local adaptive mesh refinement (AMR) platform written at ONERA by M. Borrel et al. [1],[2],[3], ...
A three-dimensional, parallel, anisotropic, block-based, adaptive mesh refinement (AMR) algorithm is...
A new parallel implicit adaptive mesh refinement (AMR) algorithm is developed for the prediction of ...
Abstract: A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predict...
A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predictions of ...
A parallel adaptive mesh refinement (AMR) algorithm is proposed and applied to the predictions of ...
A parallel adaptive mesh refinement (AMR) algorithm is described for predicting tur-bulent non-premi...
A solution-adaptive Navier-Stokes technique is presented which incorporates a fully implicit solutio...
We describe recent developments in the design and implementation of finite element methods for the c...
A parallel implicit adaptive-mesh-refinement scheme is proposed for the solution of the Navier-Stoke...
During the past two decades, the steady increase in the power of parallel super-computers participat...
During the past two decades, the steady increase in the power of parallel super-computers participat...
Capturing the effects of detailed-chemistry on turbulent combustion processes is a central challenge...
Capturing the effects of detailed-chemistry on turbulent combustion processes is a central challenge...
Abstract. We describe recent developments in the design and implementation of finite element methods...
The local adaptive mesh refinement (AMR) platform written at ONERA by M. Borrel et al. [1],[2],[3], ...
A three-dimensional, parallel, anisotropic, block-based, adaptive mesh refinement (AMR) algorithm is...