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Time-resolved Adaptive Direct FEM Simulation of High-lift Aircraft Configurations 

Jansson, J.; Krishnasamy, E.; Leoni, M.; Jansson, N.; Hoffman, J.Autoridad BCAM (2017-08-01)
Our simulation methodology is referred to as Direct FEM Simulation (DFS), or General Galerkin (G2) and uses a finite element method (FEM) with piecewise linear approximation in space and time, and with numerical stabilization ...
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Towards HPC-Embedded Case Study: Kalray and Message-Passing on NoC 

Valero-Lara, P.; Krishnasamy, E.; Jansson, J. (2017)
Today one of the most important challenges in HPC is the development of computers with a low power consumption. In this context, recently, new embedded many-core systems have emerged. One of them is Kalray. Unlike other ...
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Simulation of the HarshLab floating platform for offshore experimentation using FEniCS-HPC 

Moragues, M.Autoridad BCAM; Castanon, D.; Jansson, J.; Nava, V.Autoridad BCAM; Krishnasamy, E.; Degirmenci, N.C.; Nguyen, V.D.; Garrido, C.; Sanchez, M.; Rodriguez-Arias, R. (2017)
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Direct finite element simulation of turbulent flow for marine based renewable energy 

Jansson, J.; Nguyen, V.D.; Moragues, M.Autoridad BCAM; Castanon, D.; Saavedra, L.; Krishnasamy, E.; Goude, A.; Hoffman, J.Autoridad BCAM (2017)
In this article we present a computational framework for simulation of turbulent flow in marine based renewable energy applications. In particular, we focus on floating structures and rotating turbines. This work is an ...

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Author
Jansson, J. (4)
Krishnasamy, E. (4)
Castanon, D. (2)Hoffman, J. (2)Moragues, M. (2)Nguyen, V.D. (2)Degirmenci, N.C. (1)Garrido, C. (1)Goude, A. (1)Jansson, N. (1)... másSubjectFEM turbulence energy (2)Direct FEM, High Lift, FEniCS-HPC (1)Embedded Architectures (1)High Performance Computing (1)Jacobi Method (1)Karlay (1)OpenMP (1)Power Measurements. (1)... másFecha
2017 (4)

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