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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, Gasper; Kota, Sesi Preetam; Tekavcic, Matej


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    "contributors": [
      {
        "affiliation": "Eidgen\u00f6ssische Technische Hochschule Z\u00fcrich, Swizerland", 
        "name": "Couteau, Arthur", 
        "type": "Other"
      }, 
      {
        "affiliation": "Faculty of Engineering and Physical Sciences, University of Leeds, United Kingdom", 
        "name": "Colombo, Marco", 
        "type": "Other"
      }, 
      {
        "affiliation": "Universit\u00e4t der Bundeswehr M\u00fcnchen, Germany", 
        "name": "Ha\u00dflberger, Josef", 
        "type": "Other"
      }, 
      {
        "affiliation": "CADFEM GmbH, Germany", 
        "name": "Kriebitzsch, Sebastian", 
        "type": "Other"
      }, 
      {
        "affiliation": "Technische Universit\u00e4t Bergakademie Freiberg, Germany", 
        "name": "Kumaresh, Pramodh", 
        "type": "Other"
      }, 
      {
        "affiliation": "Technische Universit\u00e4t Dresden, Germany", 
        "name": "Parekh, Jigar", 
        "type": "Other"
      }, 
      {
        "affiliation": "Marine Design & Research Institute of China, Shanghai, China", 
        "name": "Zhang, Tingting", 
        "type": "Other"
      }, 
      {
        "affiliation": "Institute of Mechanics, Chinese Academy of Sciences, Beijing, China", 
        "name": "Wang, Lisong", 
        "type": "Other"
      }
    ], 
    "keywords": [
      "Multiphase Flow", 
      "Numerical Simulations", 
      "OpenFOAM", 
      "Computational Fluid Dynamics", 
      "Finite volume method", 
      "Baseline model", 
      "Multi-field two-fluid model", 
      "Euler-Euler method", 
      "Momentum interpolation", 
      "Partial elimination algorithm", 
      "Free Surface Flows", 
      "C++", 
      "C", 
      "CUDA", 
      "Shell", 
      "Python", 
      "Gnuplot"
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    "description": "<p>The HZDR Multiphase Addon is a software publication released by Helmholtz-Zentrum Dresden-Rossendorf according to the <a href=\"https://www.go-fair.org/fair-principles/\">FAIR principles</a> (Findability, Accessibility, Interoperability, and Reuseability). It contains experimental research work for the open-source CFD software OpenFOAM, released by <a href=\"http://www.openfoam.org\">The OpenFOAM Foundation</a>. The developments are dedicated to the numerical simulation of multiphase flows, in particular to the multi-field two-fluid model (Euler-Euler method).</p><p>Highlights of the provided addon are:</p><ul><li><b>HZDR Baseline Model:</b> <i>addonMultiphaseEulerFoam</i> solver with full support of the <a href=\"https://www.hzdr.de/db/Cms?pOid=50671\">HZDR baseline model</a> set for polydisperse bubbly flows, including configuration files and tutorials for simplified setup of Baseline cases (H\u00e4nsch et al., 2021).</li><li><b>Population Balance Modelling:</b> A GPU-accelerated <a href=\"https://www.hzdr.de/db/Cms?pOid=65155&pNid=121\">population balance method</a> according to Petelin et al. (2021).</li><li><b>Morphology-adaptive Multifield Two-fluid Model (MultiMorph):</b> <i>cipsaMultiphaseEulerFoam</i> solver featuring a <a href=\"https://hzdr.de/multimorph\">morphology-adaptive modelling approach</a> (dispersed and resolved interfaces, Meller et al., 2021) with an interface to the <i>multiphaseEulerFoam</i> framework to utilise all available interfacial models, and configuration files and tutorials for easy setup of cases with the MultiMorph Model.</li><li><a href=\"https://hzdr.de/openfoam\">more ...</a></li></ul>", 
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    "title": "HZDR Multiphase Addon for OpenFOAM", 
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    "doi": "10.14278/rodare.2185", 
    "creators": [
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        "orcid": "0000-0003-3824-9568", 
        "name": "Schlegel, Fabian"
      }, 
      {
        "orcid": "0000-0002-2743-6125", 
        "name": "Bilde, Kasper Gram", 
        "affiliation": "AAU Energy, Aalborg University, Denmark"
      }, 
      {
        "orcid": "0000-0002-0268-9118", 
        "name": "Draw, Mazen"
      }, 
      {
        "name": "Evdokimov, Ilya"
      }, 
      {
        "orcid": "0000-0003-1296-5566", 
        "name": "H\u00e4nsch, Susann"
      }, 
      {
        "orcid": "0000-0002-5862-0865", 
        "name": "Kamble, Vikrant Vinayak"
      }, 
      {
        "name": "Khan, Harris", 
        "affiliation": "Department of Computational Fluid Dynamics, Helmholtz-Zentrum Dresden-Rossendorf, Germany"
      }, 
      {
        "orcid": "0000-0002-5394-0384", 
        "name": "Krull, Benjamin"
      }, 
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        "name": "Lehnigk, Ronald"
      }, 
      {
        "name": "Li, Jiadong"
      }, 
      {
        "name": "Lyu, Hongmei"
      }, 
      {
        "orcid": "0000-0002-3801-2555", 
        "name": "Meller, Richard"
      }, 
      {
        "name": "Petelin, Gasper"
      }, 
      {
        "orcid": "0000-0001-5929-5761", 
        "name": "Kota, Sesi Preetam"
      }, 
      {
        "orcid": "0000-0002-9090-7671", 
        "name": "Tekavcic, Matej", 
        "affiliation": "Reactor Engineering Division, Jo\u017eef Stefan Institute, Slovenia"
      }
    ], 
    "language": "eng", 
    "doc_id": "1", 
    "references": [
      "H\u00e4nsch, S., Evdokimov, I., Schlegel, F., & Lucas, D. (2021). A workflow for the sustainable development of closure models for bubbly flows. Chemical Engineering Science, 116807.", 
      "Meller, R., Schlegel, F., & 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., & 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."
    ], 
    "publication_date": "2023-03-21", 
    "notes": "This work was supported by the Helmholtz European Partnering Program in the project \"Crossing borders and scales (Crossing)\"."
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