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Hydrodynamic experimental benchmark data of bubbly two-phase pipe flow around a ring-shaped constriction

Neumann-Kipping, Martin; Hampel, Uwe


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        <foaf:name>Hampel, Uwe</foaf:name>
        <foaf:givenName>Uwe</foaf:givenName>
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    <dct:title>Hydrodynamic experimental benchmark data of bubbly two-phase pipe flow around a ring-shaped constriction</dct:title>
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    <dcat:keyword>ultrafast X-ray computed tomography</dcat:keyword>
    <dcat:keyword>bubbly two-phase flow</dcat:keyword>
    <dcat:keyword>three-dimensional flow field</dcat:keyword>
    <dcat:keyword>two-phase pipe flow</dcat:keyword>
    <dcat:keyword>flow constriction</dcat:keyword>
    <dcat:keyword>experimental benchmark data</dcat:keyword>
    <dct:available rdf:datatype="http://www.w3.org/2001/XMLSchema#date">2020-06-30</dct:available>
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    <dct:description>&lt;p&gt;For the investigation of bubbly two-phase flow,&amp;nbsp;which should serve as a future benchmark experiment for CFD code validation, an experimental study has been conducted at the&amp;nbsp;&lt;strong&gt;T&lt;/strong&gt;ransient Tw&lt;strong&gt;o-P&lt;/strong&gt;hase&amp;nbsp;&lt;strong&gt;Flow&lt;/strong&gt;&amp;nbsp;(TOPFLOW) facility at Helmholtz-Zentrum Dresden &amp;ndash; Rossendorf (HZDR) using&amp;nbsp;ultrafast electron beam X-ray tomography (UFXRAY). In this study, flow constrictions were installed into a pipe&amp;nbsp;to create a generic three-dimensional flow field&amp;nbsp;as an advanced test case for CFD codes. UFXRAY provide valueable data of the gas phase dynamics with high temporal and spatial resolution.&lt;/p&gt; &lt;p&gt;The provided data set contains the entire results of the experimental series L32&amp;nbsp;that uses a&amp;nbsp;&lt;strong&gt;ring-shaped&lt;/strong&gt;&amp;nbsp;flow constriction with a blockage ratio of 0.5.&amp;nbsp;&lt;/p&gt; &lt;p&gt;An additional info.txt file provides all required information (e.g. nomenclature or&amp;nbsp;binary file structure) and is, thus, necessary for interpretation of the experimental data.&lt;/p&gt;</dct:description>
    <dct:description xml:lang="">This work is funded by the German Federal Ministry for Economic Affairs and Energy (BMWi) with the grant number 1501481 on the basis of a decision by the German Bundestag.</dct:description>
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