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New algorithm to discriminate phase distribution of gas-oil-water pipe flow with dual-modality wire-mesh sensor - Data set

Assis Dias, Felipe de; Nunes Dos Santos, Eduardo; Da Silva, Marco Jose; Schleicher, Eckhard; Morales, R. E. M.; Hewakandamby, B.; Hampel, Uwe


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    "keywords": [
      "complex impedance", 
      "flow visualization", 
      "gas-oil-water horizontal flow", 
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      "wire-mesh sensor"
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        "name": "Assis Dias, Felipe de", 
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        "name": "Nunes Dos Santos, Eduardo", 
        "affiliation": "Multiphase Flow Research Center, Universidade Tecnol\u00f3gica Federal do Paran\u00e1, Brazil"
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        "name": "Da Silva, Marco Jose", 
        "affiliation": "Multiphase Flow Research Center, Universidade Tecnol\u00f3gica Federal do Paran\u00e1, Brazil"
      }, 
      {
        "name": "Schleicher, Eckhard"
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      {
        "name": "Morales, R. E. M.", 
        "affiliation": "Multiphase Flow Research Center, Universidade Tecnol\u00f3gica Federal do Paran\u00e1, Brazil"
      }, 
      {
        "name": "Hewakandamby, B.", 
        "affiliation": "Faculty of Engineering, University of Nottingham, United Kingdom"
      }, 
      {
        "name": "Hampel, Uwe", 
        "orcid": "0000-0002-7371-0148"
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    "doi": "10.14278/rodare.373", 
    "pub_id": "31152", 
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    "title": "New algorithm to discriminate phase distribution of gas-oil-water pipe flow with dual-modality wire-mesh sensor - Data set", 
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    "publication_date": "2020-06-16", 
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    "description": "<p>Data set used on the work \"New Algorithm to Discriminate Phase Distribution of Gas-Oil-Water Pipe Flow with Dual-Modality Wire-Mesh Sensor\".</p>\r\n\r\n<p>Data were acquired using a dual-modality wire-mesh sensor designed by the Brazilian partner UTFPR. The experiments were performed at the University of Nottingham in a water-oil liquid-liquid flow loop.</p>\r\n\r\n<p>However, the gas phase was introduced into the system to perform stratified three-phase flow measurements as a proof of concept. In this set of data, you find the calibrated amplitude and phase signals of nine points as well as permittivity and conductivity estimations (post-processing).</p>"
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