• DocumentCode
    3742286
  • Title

    Fluid flow velocity measurement using dual-ultrasonic transducer by means of simultaneously transit time method

  • Author

    K. Amri;L.F. Wiranata; Suprijanto;D. Kurniadi

  • Author_Institution
    Instrumentation and Control Research Group, Institut Teknologi Bandung, Indonesia
  • fYear
    2015
  • Firstpage
    113
  • Lastpage
    116
  • Abstract
    An ultrasonic flowmeter based on transit time method (USM-TT) is often used to obtain high accuracy measurements of gas flow velocity. The working principle of an USM-TT is based on the measurements of two times of flight (TOF) of ultrasonic waves that propagate toward opposite direction. In particular, both TOFs are measured sequentially under the assumption that there exists no sudden change of flow velocity during the sampling period. When such an assumption is not fulfilled, the obtained velocity can not be assumed to be the true data. To overcome the above problem, we propose an alternative method, namely simultaneously transit time (STT), which is able to obtain both of TOFs for the same flow velocity by employing dual ultrasonic transducers that transmit and receive ultrasonic wave simultaneously. For experimental validation, two ultrasonic modules which have a transmitter and a receiver ultrasonic inside are utilized as ultrasonic transducer. In addition, microcontroller is employed for data acquisition and activating the ultrasonic devices. Based on the obtained experimental data, we found that the STT method effectively reduces the sampling period required in the conventional method up to almost 50%. Thus, because TOFs are obtained for the same flow velocity, the probability of the sudden change of flow velocity during the sampling period can be diminished.
  • Keywords
    "Acoustics","Transducers","Ultrasonic variables measurement","Fluid flow","Biomedical measurement","Fluid flow measurement","Velocity measurement"
  • Publisher
    ieee
  • Conference_Titel
    Instrumentation, Communications, Information Technology, and Biomedical Engineering (ICICI-BME), 2015 4th International Conference on
  • Type

    conf

  • DOI
    10.1109/ICICI-BME.2015.7401346
  • Filename
    7401346