multiphysics data for a Molten Salt Fast Reactor (MSFR) nuclear fission analysis

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1. Verfasser: Roesch, Karl
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Veröffentlicht: Zenodo 2026
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author Roesch, Karl
author_facet Roesch, Karl
contents <p>3D multiphysics simulation data for a Molten Salt Fast Reactor (MSFR) core, capturing the transient behavior of gaseous fission products and a helium bubbling system. Structured as a native VTK Multiblock Dataset (<code>.vtm</code>), the repository contains a massive volumetric unstructured grid file (<code>two-phase_0_0.vtu</code>) representing the internal core fluid dynamics, alongside multiple polydata surface files (<code>two-phase_1_0.vtp</code> through <code>two-phase_7_0.vtp</code>) that map specific boundary patches and inlet walls. The data arrays track localized, synchronized physical attributes across tens of thousands of spatial nodes—specifically documenting helium gas void fractions (<code>alpha.air</code>), fluid velocity vectors (<span class="math-inline">$U$</span>), temperature gradients (<span class="math-inline">$T$</span>), and xenon concentrations—providing an authentic, highly complex structural topology for fluid and neutronics visualization pipelines.<br><br><br></p> <p>base reasearch pdf included.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_20330084
institution Zenodo
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publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle multiphysics data for a Molten Salt Fast Reactor (MSFR) nuclear fission analysis
Roesch, Karl
<p>3D multiphysics simulation data for a Molten Salt Fast Reactor (MSFR) core, capturing the transient behavior of gaseous fission products and a helium bubbling system. Structured as a native VTK Multiblock Dataset (<code>.vtm</code>), the repository contains a massive volumetric unstructured grid file (<code>two-phase_0_0.vtu</code>) representing the internal core fluid dynamics, alongside multiple polydata surface files (<code>two-phase_1_0.vtp</code> through <code>two-phase_7_0.vtp</code>) that map specific boundary patches and inlet walls. The data arrays track localized, synchronized physical attributes across tens of thousands of spatial nodes—specifically documenting helium gas void fractions (<code>alpha.air</code>), fluid velocity vectors (<span class="math-inline">$U$</span>), temperature gradients (<span class="math-inline">$T$</span>), and xenon concentrations—providing an authentic, highly complex structural topology for fluid and neutronics visualization pipelines.<br><br><br></p> <p>base reasearch pdf included.</p>
title multiphysics data for a Molten Salt Fast Reactor (MSFR) nuclear fission analysis
url https://doi.org/10.5281/zenodo.20330084