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HZDR Multiphase Addon for OpenFOAM

Schlegel, Fabian; Bilde, Kasper Gram; Draw, Mazen; Evdokimov, Ilya; Hänsch, Susann; Kamble, Vikrant Vinayak; Khan, Harris; Krull, Benjamin; Lehnigk, Ronald; Li, Jiadong; Lyu, Hongmei; Meller, Richard; Petelin, Gašper; Tekavčič, Matej; Kota, Sesi Preetam


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    <dct:title>HZDR Multiphase Addon for OpenFOAM</dct:title>
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    <dcat:keyword>Multiphase Flow</dcat:keyword>
    <dcat:keyword>Numerical Simulations</dcat:keyword>
    <dcat:keyword>OpenFOAM</dcat:keyword>
    <dcat:keyword>Computational Fluid Dynamics</dcat:keyword>
    <dcat:keyword>Finite volume method</dcat:keyword>
    <dcat:keyword>Baseline model</dcat:keyword>
    <dcat:keyword>Multi-field two-fluid model</dcat:keyword>
    <dcat:keyword>Euler-Euler method</dcat:keyword>
    <dcat:keyword>Momentum interpolation</dcat:keyword>
    <dcat:keyword>Partial elimination algorithm</dcat:keyword>
    <dcat:keyword>Free Surface Flows</dcat:keyword>
    <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#date">2022-10-14</dct:issued>
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    <dct:description>&lt;p&gt;The HZDR Multiphase Addon is a software publication released by Helmholtz-Zentrum Dresden-Rossendorf according to the &lt;a href="https://www.go-fair.org/fair-principles/"&gt;FAIR principles&lt;/a&gt; (Findability, Accessibility, Interoperability, and Reuseability). It contains experimental research work for the open-source CFD software OpenFOAM, released by &lt;a href="http://www.openfoam.org"&gt;The OpenFOAM Foundation&lt;/a&gt;. The developments are dedicated to the numerical simulation of multiphase flows, in particular to the multi-field two-fluid model (Euler-Euler method).&lt;/p&gt; &lt;p&gt;Highlights of the provided addon are:&lt;/p&gt; &lt;ul&gt; &lt;li&gt;&lt;strong&gt;HZDR Baseline Model:&lt;/strong&gt; &lt;em&gt;HZDRMultiphaseEulerFoam&lt;/em&gt; solver with full support of the &lt;a href="https://www.hzdr.de/db/Cms?pOid=50671"&gt;HZDR baseline model&lt;/a&gt; set for polydisperse bubbly flows, including configuration files and tutorials for simplified setup of Baseline cases (H&amp;auml;nsch et al., 2021).&lt;/li&gt; &lt;li&gt;&lt;strong&gt;Population Balance Modelling:&lt;/strong&gt; A GPU-accelerated &lt;a href="https://www.hzdr.de/db/Cms?pOid=65155&amp;amp;pNid=121"&gt;population balance method&lt;/a&gt; according to Petelin et al. (2021).&lt;/li&gt; &lt;li&gt;&lt;strong&gt;OpenFOAM-Hybrid&lt;/strong&gt; &lt;em&gt;cipsaMultiphaseEulerFoam&lt;/em&gt; solver featuring a &lt;a href="https://hzdr.de/openfoam-hybrid"&gt;hybrid modelling approach&lt;/a&gt; (dispersed and resolved interfaces, Meller et al., 2021) with an interface to the &lt;em&gt;multiphaseEulerFoam&lt;/em&gt; framework to utilise all available interfacial models, and configuration files and tutorials for easy setup of hybrid cases.&lt;/li&gt; &lt;li&gt;&lt;a href="https://hzdr.de/openfoam"&gt;more ...&lt;/a&gt;&lt;/li&gt; &lt;/ul&gt;</dct:description>
    <dct:description xml:lang="">This work was supported by the Helmholtz European Partnering Program in the project "Crossing borders and scales (Crossing)"</dct:description>
    <dct:description xml:lang="">{"references": ["H\u00e4nsch, S., Evdokimov, I., Schlegel, F., &amp; Lucas, D. (2021). A workflow for the sustainable development of closure models for bubbly flows. Chemical Engineering Science, 116807.", "Meller, R., Schlegel, F., &amp; Lucas, D. (2021). Basic verification of a numerical framework applied to a morphology adaptive multifield two\u2010fluid model considering bubble motions. International Journal for Numerical Methods in Fluids, 93(3), 748-773.", "Petelin, G., Lehnigk, R., Kelling, J., Papa, G., &amp; Schlegel, F. (2021). GPU-based Accelerated Computation of Coalescence and Breakup Frequencies for Polydisperse Bubbly Flows. 30th International Conference Nuclear Energy for New Europe (NENE2021), Bled, Slovenia."]}</dct:description>
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