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Determining the axial gas dispersion coefficient in bubble columns via gas flow modulation technique and several sensing strategies

Marchini, Sara; Bieberle, André; Schleicher, Eckhard; Schubert, Markus; Hampel, Uwe


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    <dct:title>Determining the axial gas dispersion coefficient in bubble columns via gas flow modulation technique and several sensing strategies</dct:title>
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    <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#gYear">2023</dct:issued>
    <dcat:keyword>gas flow modulation</dcat:keyword>
    <dcat:keyword>axial dispersion coefficient</dcat:keyword>
    <dcat:keyword>bubble columns</dcat:keyword>
    <dcat:keyword>conductivity needle probes</dcat:keyword>
    <dcat:keyword>transmittance optical probes</dcat:keyword>
    <dct:issued rdf:datatype="http://www.w3.org/2001/XMLSchema#date">2023-02-06</dct:issued>
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    <dct:description>&lt;p&gt;Collected data refer to gas flow modulation measurements in a D=100 mm bubble column. The axial holdup wave is determined at three axial positions using different sensing stategies (gamma-ray densitometry, differential pressure sensors, transmittance optical probes and conductivity needle probes). Average gas holdup as well as amplitude damping and phase-shift have been determined at three different gas flow rates in the homogeneous regime. A description of the experimental setup is provided in the file &amp;quot;Experimental_setup.pdf&amp;quot;. An overview of the performed experiments is provided in the Excel file &amp;quot;DataDescription.xlsx&amp;quot;&lt;/p&gt;</dct:description>
    <dct:description xml:lang="">This work was supported by the German Research Foundation (DFG), (HA 3088/18-1).</dct:description>
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