• Title of article

    A Novel Electrical Cpacitance Sensor Design For Dual Modality Tomography Multiphase Measurement

  • Author/Authors

    Pusppanathan, Muhammad Jaysuman Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography and Instrumentation Engineering Research Group (PROTOM-i), Infocomm Research Alliance, Malaysia , Yunus, Fazlul Rahman Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography Research Group (PROTOM), Malaysia , Ayob, Nor Muzakkir Nor Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography and Instrumentation Engineering Research Group (PROTOM-i), Infocomm Research Alliance, Malaysia , Abdul Rahim, Ruzairi Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography Research Group (PROTOM-i), Malaysia , Phang, Fatin Aliah Universiti Teknologi Malaysia - Centre of Engineering Education (CEE), Malaysia , Abdul Rahim, Herlina Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography and Instrumentation Engineering Research Group (PROTOM-i), Infocomm Research Alliance, Malaysia , Ling, Leow Pei Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography and Instrumentation Engineering Research Group (PROTOM-i), Malaysia , Abas, Khairul Hamimah Universiti Teknologi Malaysia - Faculty of Electrical Engineering - Process Tomography Research Group (PROTOM), Malaysia

  • From page
    43
  • To page
    45
  • Abstract
    Electrical capacitance tomography (ECT) is one of process tomography technique which is developed rapidly in recent years. ECT is an imaging technique to obtain the internal permittivity distribution of a vessel or pipe by using capacitance electrodes sensor. This method has been integrated with ultrasonic tomography as multimodality system to perform multiphase flow measurement such as crude oil separation and oil process industry. In the present paper, a novel type of ECT sensor was developed using copper FR4 material. The electrode sensors can be flexibly bend or curve to fit the pipe surface for optimum measurement. Thus, every single sensor strip is designed to be functioned independently. Such system has lower sensing capability in the central of the sensing area which often contributes to poor imaging result. This problem can be overcome by combining the ECT with ultrasonic tomography to form a dual modality tomography system. By implementing the new ECT sensor, multiphase flow measurement image results can be achieved. The reconstructed image results are presented in this paper.
  • Keywords
    ECT tomography , electrical capacitance , sensor , multiphase flow measurement
  • Journal title
    Jurnal Teknologi :F
  • Journal title
    Jurnal Teknologi :F
  • Record number

    2716147