Difference between revisions of "Data Management"

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== Next-generation imaging filters and mesh-based data representation for phase-space calculations in nuclear femtography ==
 
== Next-generation imaging filters and mesh-based data representation for phase-space calculations in nuclear femtography ==
 
[[CNF]]
 
[[CNF]]
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[[File:Paraview_plot.png|400px| ]]
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|
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[[File:Plot.png|350px|]]
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|- style="text-align: left;"
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||||''' '''
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Tomographic pictures of the nucleon. Namely,  the plots show a spatial distribution of up quarks as a function of proton's momentum fraction carried by those quarks.  Specifically, bX and bY are the spatial coordinates (in 1/GeV = 0.197 fm) defined in a plane perpendicular to the nucleon’s motion, x is the fraction of proton’s momentum and color denotes probability density for finding a quark at given (bX, bY, x).  Plots produced by  Dr. Gagik Gavalian and Dr. Pawel Sznajder and tesselate by CRTC's tessellation software.
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== Exascale-Era Finite Element Mesh Generation  ==
 
== Exascale-Era Finite Element Mesh Generation  ==

Revision as of 15:44, 9 July 2019

Next-generation imaging filters and mesh-based data representation for phase-space calculations in nuclear femtography

CNF Paraview plot.png | Plot.png |- style="text-align: left;" |||| |}

Tomographic pictures of the nucleon. Namely, the plots show a spatial distribution of up quarks as a function of proton's momentum fraction carried by those quarks. Specifically, bX and bY are the spatial coordinates (in 1/GeV = 0.197 fm) defined in a plane perpendicular to the nucleon’s motion, x is the fraction of proton’s momentum and color denotes probability density for finding a quark at given (bX, bY, x). Plots produced by Dr. Gagik Gavalian and Dr. Pawel Sznajder and tesselate by CRTC's tessellation software.


Exascale-Era Finite Element Mesh Generation

CDT3D pipeline.png

Boundary Recovery

Boundary Recovery

Isotropic Mesh Generation

Isotropic Mesh Generation

Anisotropic Mesh Generation

Anisotropic Mesh Generation

Runtime Systems

Runtime Systems