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Microfocus X-ray tomography data set of boiling flow in vertical rod bundle with spacer grid at constant heat flux condition

Tas-Köhler, Sibel; Franz, Ronald; Boden, Stephan; Hampel, Uwe


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        <foaf:name>Boden, Stephan</foaf:name>
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        <foaf:name>Hampel, Uwe</foaf:name>
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    <dct:title>Microfocus X-ray tomography data set of boiling flow in vertical rod bundle with spacer grid at constant heat flux condition</dct:title>
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    <dcat:keyword>X-Ray Computed Tomography</dcat:keyword>
    <dcat:keyword>Phase fraction</dcat:keyword>
    <dcat:keyword>Rod bundle</dcat:keyword>
    <dcat:keyword>Boiling flow</dcat:keyword>
    <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#date">2020-07-08</dct:issued>
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    <dct:description>&lt;p&gt;The test section of the rod bundle experimental facility at HZDR consists of a vertically aligned PMMA channel with an upward flow of the working fluid. The cross-section of the channel is quadratic (inner edge length: 37 mm) and contains nine directly electrically heated rods (material: titanium-alloy, diameter: 10 mm, wall thickness: 0.3 mm) which are arranged in an orthogonal 3 by 3 matrix (rod axis distance: 12.8 mm). Circa 190 mm downstream of the start of the heating zone a 30 mm long spacer for the rods with tilted flow guiding vanes is mounted. These vanes are aimed to increase lateral flow velocities within the subchannels. Working fluid was octafluorocyclobutane (CAS 115-25-3, RC318). The experimental facility is comprehensively instrumented for measurement of flow, temperature and pressure/pressure difference. For non-invasive three-dimensional high-resolution measurement of a temporally averaged volumetric void fraction within the working fluid flowing around the heating rods in the subchannels an X-ray computer tomography measurement system was set up.&lt;br&gt; The presented dataset contains measurement data of the experimental facility's instrumentation and tomographic void fraction data of experiments with four different configurations of the flow guiding vanes (without vanes, 20°, 29°, 40°) for four different flow velocities between 0.4 m/s and 1.3 m/s at a heat flow density of 85.7 kW/m².&lt;/p&gt;</dct:description>
    <dct:description xml:lang="">The data was acquired within a research project which was funded by the Federal Ministry of Economic Affairs and Energy of Germany under grant number 1501473C.</dct:description>
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