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Published in: Measurement Techniques 3/2018

04-07-2018 | PHYSICOCHEMICAL MEASUREMENTS

Theoretical Basis for Fused-Quartz Resonator Flow Tube Design

Authors: Yu. K. Taranenko, O. Yu. Oliynyk, N. A. Minakova, O. V. Titova

Published in: Measurement Techniques | Issue 3/2018

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Abstract

We have derived the basic equations underlying the design specifications for fused-quartz resonator flow tubes, as well as the equations for the amplitude and angular frequency of the oscillations; developed a design for a resonator detector with a quartz-glass resonator flow tube; and studied the vibrational modes for the quartz tubes in this resonator. We present equations for determining the sensitivity and estimated error of the sensor element in the resonator sensor.

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Literature
1.
go back to reference A. G. Divin, S. V. Ponomarev, and G. V. Mozgova, Measurement Methods, Measuring Instruments, Tests, and Checks: Textbook, Pt. 2, TGTU, Tambov (2012). A. G. Divin, S. V. Ponomarev, and G. V. Mozgova, Measurement Methods, Measuring Instruments, Tests, and Checks: Textbook, Pt. 2, TGTU, Tambov (2012).
2.
go back to reference A. Ya. Suranov, LabVIEW 7: Functional Reference, DMK-Press, Moscow (2005). A. Ya. Suranov, LabVIEW 7: Functional Reference, DMK-Press, Moscow (2005).
3.
go back to reference V. K. Batorvin, A. S. Bessonov, V. V. Moshkin, and V. F. Papulovskii, LabVIEW: Laboratory Manual on Basic Measurement Techniques, DMK-Press, Moscow (2005). V. K. Batorvin, A. S. Bessonov, V. V. Moshkin, and V. F. Papulovskii, LabVIEW: Laboratory Manual on Basic Measurement Techniques, DMK-Press, Moscow (2005).
4.
go back to reference V. Fedosov and A. Nesterenko, Digital Signal Processing in LabVIEW: Textbook, DMK-Press, Moscow (2017). V. Fedosov and A. Nesterenko, Digital Signal Processing in LabVIEW: Textbook, DMK-Press, Moscow (2017).
5.
go back to reference V. A. Zverev, E. V. Krivopustova, and T. V. Tochilina, Optical Materials: Textbook for Optical System and Instrument Designers, Pt. 2, SPb NIU ITMO, St. Petersburg (2013). V. A. Zverev, E. V. Krivopustova, and T. V. Tochilina, Optical Materials: Textbook for Optical System and Instrument Designers, Pt. 2, SPb NIU ITMO, St. Petersburg (2013).
6.
go back to reference Y. Murozaki, K. Nogawa, and F. Arai, “Miniaturized load sensor using quartz crystal resonator constructed through microfabrication and bonding,” Robomech J., 1, No. 1, 3 (2014).CrossRef Y. Murozaki, K. Nogawa, and F. Arai, “Miniaturized load sensor using quartz crystal resonator constructed through microfabrication and bonding,” Robomech J., 1, No. 1, 3 (2014).CrossRef
7.
go back to reference M. Köhring, S. Böttger, U. Willer, and W. Schade, “LED-absorption-QEPAS sensor for biogas plants,” Sensors, 15, 12092–12102 (2015).CrossRef M. Köhring, S. Böttger, U. Willer, and W. Schade, “LED-absorption-QEPAS sensor for biogas plants,” Sensors, 15, 12092–12102 (2015).CrossRef
8.
go back to reference J. P. Waclawek, H. Moser, and B. Lendl, “Compact quantum cascade laser based quartz-enhanced photoacoustic spectroscopy sensor system for detection of carbon disulfi de,” Opt. Express, 24, 6559–6571 (2016).ADSCrossRef J. P. Waclawek, H. Moser, and B. Lendl, “Compact quantum cascade laser based quartz-enhanced photoacoustic spectroscopy sensor system for detection of carbon disulfi de,” Opt. Express, 24, 6559–6571 (2016).ADSCrossRef
9.
go back to reference J. Nie, J. Liu, N. Li, and X. Meng, “Dew point measurement using dual quartz crystal resonator sensor,” Sens. Actuators, B, 246, 792–799 (2017).CrossRef J. Nie, J. Liu, N. Li, and X. Meng, “Dew point measurement using dual quartz crystal resonator sensor,” Sens. Actuators, B, 246, 792–799 (2017).CrossRef
10.
go back to reference J. Mouro, L. Teagno, A. Gualdino, et al., “Electrical characterization of thin-film silicon flexural resonators in linear and nonlinear regimes of motion for integration with electronics,” Sens. Actuators, A, 247, 482–493 (2016).CrossRef J. Mouro, L. Teagno, A. Gualdino, et al., “Electrical characterization of thin-film silicon flexural resonators in linear and nonlinear regimes of motion for integration with electronics,” Sens. Actuators, A, 247, 482–493 (2016).CrossRef
11.
go back to reference L. Kong, X. Xie, J. Zhang, et al., “On the interaction between a quartz crystal resonator and an array of micro-beams in thickness-shear vibrations,” Acta Mech. Solida Sinica, 28, 464–470 (2015).CrossRef L. Kong, X. Xie, J. Zhang, et al., “On the interaction between a quartz crystal resonator and an array of micro-beams in thickness-shear vibrations,” Acta Mech. Solida Sinica, 28, 464–470 (2015).CrossRef
12.
go back to reference V. L. Biderman, Theory of Mechanical Oscillations, Vysshaya Shkola, Moscow (1980). V. L. Biderman, Theory of Mechanical Oscillations, Vysshaya Shkola, Moscow (1980).
13.
go back to reference O. V. Mazurin, M. V. Strel’tsina, and T. P. Shvaiko-Shvaikovskaya, Properties of Glasses and Glass-Forming Coatings: Handbook, Nauka, Leningrad (1998), Vol. 1. O. V. Mazurin, M. V. Strel’tsina, and T. P. Shvaiko-Shvaikovskaya, Properties of Glasses and Glass-Forming Coatings: Handbook, Nauka, Leningrad (1998), Vol. 1.
14.
go back to reference V. I. Anur’ev, Machinery Design Engineer’s Handbook, I. N. Zhestkova (ed.), Mashinostroenie, Moscow (2001), Vol. 1. V. I. Anur’ev, Machinery Design Engineer’s Handbook, I. N. Zhestkova (ed.), Mashinostroenie, Moscow (2001), Vol. 1.
15.
go back to reference Yu. K. Taranenko, “Mathematical model of the sensitivity of a differential fluid density sensor based on two tube resonators,” Vopr. Khim. Khim. Tekhnol., No. 5, 228–232 (2006). Yu. K. Taranenko, “Mathematical model of the sensitivity of a differential fluid density sensor based on two tube resonators,” Vopr. Khim. Khim. Tekhnol., No. 5, 228–232 (2006).
Metadata
Title
Theoretical Basis for Fused-Quartz Resonator Flow Tube Design
Authors
Yu. K. Taranenko
O. Yu. Oliynyk
N. A. Minakova
O. V. Titova
Publication date
04-07-2018
Publisher
Springer US
Published in
Measurement Techniques / Issue 3/2018
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-018-1427-0

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