DocumentCode :
1048431
Title :
A Capacitance Ultrasonic Transducer With Micromachined Backplate for Fast Flow Measurements in Hot Pulsating Gases
Author :
Schröder, Andreas ; Kupnik, Mario ; O´Leary, Paul ; Benes, Ewald ; Groschl, M.
Author_Institution :
Inst. of Gen. Phys., Vienna Univ. of Technol.
Volume :
6
Issue :
4
fYear :
2006
Firstpage :
898
Lastpage :
905
Abstract :
A novel high-temperature resistant capacitance ultrasonic transducer is presented. It is designed for an ultrasonic transit-time gas flowmeter and meets two main requirements not fulfilled by common piezoelectric transducers: First, a special construction based on an oxidized and patterned silicon backplate combined with a metallic membrane enables transducer operation at elevated gas temperatures of up to 600 degC. Second, the geometry and material parameters were chosen to obtain a broadband device that allows high signal slew rates and pulse repetition rates. As proven by measurements in an automotive combustion engine test bed environment, this new transducer suits for internal combustion engine exhaust flow measurements in between the catalytic converter and the end of the exhaust pipe. Preliminary results for the exhaust mass flow (up to 160 kg/h) of a typical automotive engine measured with these novel transducers are given and compared with the mass flow calculated from fuel consumption and air/fuel ratio (lambda)
Keywords :
capacitive sensors; flow measurement; flowmeters; internal combustion engines; ultrasonic transducers; UFM; automotive combustion engine; broadband device; capacitance ultrasonic transducer; catalytic converter; flow measurements; fuel consumption; hot pulsating gases; internal combustion engine; mass flowmeter; micromachined backplate; oxidized silicon back-plate; patterned silicon back-plate; transit-time gas flowmeter; ultrasonic gas flowmeter; Automotive engineering; Capacitance measurement; Fluid flow measurement; Fuels; Gases; Internal combustion engines; Piezoelectric transducers; Silicon; Ultrasonic transducers; Ultrasonic variables measurement; Capacitance transducer; exhaust gas; high-temperature ultrasonic transducer; mass flowmeter; pulsating gas flow; ultrasonic flowmeter (UFM);
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2006.877975
Filename :
1661569
Link To Document :
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