GER Sh WIN
Software.GERShWIN History
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GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model. GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
to:
GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model. GERShWIN has been selected has one of the applications of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
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GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model.
GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
to:
GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model. GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
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GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model.\\
to:
GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model.
GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
GERShWIN has been selected has one of the use cases of the %newwin% [[http://www.deep-er.eu | DEEP-ER]] EU project. In this context, its hybrid MIMD/SIMD parallelization has been investigated in detail using different approaches and programming models.
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(:table border='0' width='90%' align='center' cellspacing='1px':)
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(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg (:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/crane.jpg
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(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/crane.jpg
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(:table border='0' width='100%' align='center' cellspacing='1px':)
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(:table border='0' width='90%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/tete.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg (:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/crane.jpg
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/tete.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg (:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/crane.jpg
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(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg
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(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_crane-1.jpg
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(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_crane-1.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/tete.jpg
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(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/crane.jpg
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(:table border='0' width='90%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_crane-1.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_peau-1.jpg
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(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/E_crane-1.jpg
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Heterogeneous geometrical model of head tissues, which consists of 4 tissues: skin, skull, CSF and brain. The final tetrahedral mesh contains 1,853,832 elements.
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(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
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(:cellnr align='center':) %width=180px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
(:cell align='center':) %width=180px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
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(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/HEAD.png
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(:cellnr align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/HEAD.png
(:cell align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/256.png
(:cell align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/256.png
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(:table border='0' width='70%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/HEAD.png
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/256.png
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(:table border='0' width='70%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/foetus-mesh_a.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/foetus-mesh_b.jpg
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/sar_ov_ptot-m2-foetus_a-noleg.jpg
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Heterogeneous geometrical model of a pregnant woman, which consists of 3 tissues. The fetus and the brain of the fetus are considered as different tissues and are meshed separately. The final tetrahedral mesh contains 5,536,852 elements.
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(:tableend:) | Blabla
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(:cell align='center':) Heterogeneous geometrical model of a pregnant woman, which consists of 3 tissues. The fetus and the brain of the fetus are considered as different tissues and are meshed separately. The final tetrahedral mesh contains 5,536,852 elements.
(:tableend:)
(:tableend:)
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%lfloat text-align=center width=250px% (:table border='0' width='70%' align='center' cellspacing='1px':)
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(:tableend:) | Blabla
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(:table border='0' width='90%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
(:cell align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
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(:table border='0' width='80%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
(:cell align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
(:cellnr align='center':) %width=200px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
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(:cellnr align='center':) %width=350px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
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(:cellnr align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
(:cell align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
(:cell align='center':) %width=250px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
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(:table border='0' width='100%' align='center' cellspacing='1px':)
(:cellnr align='center':) %width=350px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-1.png
(:cell align='center':) %width=350px% http://www-sop.inria.fr/nachos/softs/gershwin/woman-2.png
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!!! GERShWIN -
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!!! GERShWIN - discontinuous GalERkin Solver for microWave INteraction with biological tissues
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!!! GERShWIN -
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!!! GERShWIN -
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GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model.\\