DocumentCode :
3382551
Title :
Self - monitoring Ultrasonic Vortex and Correlation Gas Flow Meter
Author :
Hans, Volker ; Lin, Yaoying
Author_Institution :
Inst. of Meas. & Control, Duisburg Univ., Essen
Volume :
3
fYear :
2005
fDate :
16-19 May 2005
Firstpage :
2276
Lastpage :
2280
Abstract :
Ultrasound is predestined for gas flow velocity measurements on account of its high sensitivity to all kinds of turbulences in the streaming fluid. Cross-correlation methods as well as vortex measurements behind a bluff body have been proved good. The most important problem is the ultrasound signal processing. The complex modulated signal can be demodulated by undersampling. The real and imaginary parts of the complex signal can be determined by Hilbert transformation. The demodulated phase signal can be applied to cross-correlation functions for the detection of flow velocity. The vortex frequency can be detected by a simple analog signal processing device. The combination of vortex and cross-correlation measurements results in a self-monitoring system. The pattern of a group of vortices is used to determine the transition time between two sensor pairs. Measurement results show that the uncertainty of gas flow velocity with bluff body is evidently smaller than that without bluff body
Keywords :
Hilbert transforms; acoustic signal processing; correlation methods; flowmeters; signal sampling; ultrasonic measurement; velocity measurement; vortices; Hilbert transformation; analog signal processing device; cross-correlation methods; demodulated phase signal; flow velocity detection; gas flow meter; gas flow velocity measurements; self-monitoring system; ultrasonic vortex; ultrasound signal processing; vortex frequency; vortex measurements; Fluid flow; Fluid flow measurement; Frequency; Monitoring; Phase detection; Signal processing; Streaming media; Ultrasonic imaging; Ultrasonic variables measurement; Velocity measurement; Ultrasound; correlation; self - monitoring system; signal processing; vortex;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference, 2005. IMTC 2005. Proceedings of the IEEE
Conference_Location :
Ottawa, Ont.
Print_ISBN :
0-7803-8879-8
Type :
conf
DOI :
10.1109/IMTC.2005.1604582
Filename :
1604582
Link To Document :
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