Title :
Simulation and experimental validation of a transit time in an ultrasonic gas flow meter using air
Author :
Reyes, J. ; Acevedo, Antonio
Abstract :
This paper presents the simulation and validation of the algorithm that determines the transit time of the acoustic wave in an ultrasonic flow meter using air. The work is based on "Heimholte Integral Ray Trace Method" for the simulation of the wave propagation between two transducers. The validations were performed comparing the simulation results with the collected data from an ultrasonic meter placed at a calibration bench working with air. As input parameters for the simulation were taken the pressure, temperature, humidity and air flow, which were measured during experimental tests carried out with the ultrasonic meter.
Keywords :
Helmholtz equations; acoustic waves; flowmeters; Heimholte integral ray trace method; acoustic wave; air; transducers; transit time; ultrasonic gas flow meter; wave propagation; Acoustics; Atmospheric modeling; Equations; Fluid flow measurement; Instruments; Mathematical model; Temperature measurement; Flow Gas Measurement; Helmontz Integral Ray Trace Method; Transit Time; Ultrasonic Flow meter;
Conference_Titel :
ANDESCON, 2010 IEEE
Conference_Location :
Bogota
Print_ISBN :
978-1-4244-6740-2
DOI :
10.1109/ANDESCON.2010.5633618