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Published in: Measurement Techniques 11/2017

22-04-2017

Nuclear Magnetic Spectrometer for Studying Flows of Liquid Media

Author: V. V. Davydov

Published in: Measurement Techniques | Issue 11/2017

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Abstract

Elements of studies of flows of liquid media by a nuclear magnetic spectrometer are considered. Through an assessment of these features in the design of a nuclear magnetic spectrometer the relative concentrations of paramagnetic ions could be determined and the longitudinal and transverse relaxation times measured in flows of liquid media with error not more than 0.5%. A regime for recording the nuclear magnetic resonance signal of a flowing liquid of fluorine, phosphorous, lithium, boron, sodium, chlorine, and mercury nuclei is created. The results of experimental studies of flows of liquid media are presented.

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Literature
1.
go back to reference A. V. Pushnov, “Measurement of the rate of discharge of two-phase flow by a Coriolis flowmeter,” Izmer. Tekhn., No. 4, 45–48 (2013). A. V. Pushnov, “Measurement of the rate of discharge of two-phase flow by a Coriolis flowmeter,” Izmer. Tekhn., No. 4, 45–48 (2013).
2.
go back to reference I. D. Vel’t and Yu. V. Mikhaylova, “A magnetic flowmeter for use with molten metals,” Izmer. Tekhn., No. 3, 24–28 (2013). I. D. Vel’t and Yu. V. Mikhaylova, “A magnetic flowmeter for use with molten metals,” Izmer. Tekhn., No. 3, 24–28 (2013).
3.
go back to reference V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Fiber-optic imitator of accident situation for verification of work of control systems of atomic energy plants on ships,” Opt. Memory & Neural Networks (Inform. Optics), 23, No. 3, 173–176 (2014). V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Fiber-optic imitator of accident situation for verification of work of control systems of atomic energy plants on ships,” Opt. Memory & Neural Networks (Inform. Optics), 23, No. 3, 173–176 (2014).
4.
go back to reference V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Increasing the precision with which the relaxation constants of a flowing liquid in a nuclear magnetic spectrometer are measured,” Priborostroenie, 56, No. 10, 64–68 (2013). V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Increasing the precision with which the relaxation constants of a flowing liquid in a nuclear magnetic spectrometer are measured,” Priborostroenie, 56, No. 10, 64–68 (2013).
5.
go back to reference V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “A compact nuclear magnetic relaxometer for express control of the state of liquid and viscous media,” Izmer. Tekhn., No. 8, 44–48 (2014). V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “A compact nuclear magnetic relaxometer for express control of the state of liquid and viscous media,” Izmer. Tekhn., No. 8, 44–48 (2014).
6.
go back to reference V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “A streaming-liquid nuclear resonance magnetometer for measurement of weak fields,” Zh. Tekh. Fiz., 85, No. 3, 138–143 (2015). V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “A streaming-liquid nuclear resonance magnetometer for measurement of weak fields,” Zh. Tekh. Fiz., 85, No. 3, 138–143 (2015).
7.
go back to reference I. D. Vel’t and Yu. V. Mikhaylova, “An electromagnetic method of measuring the rate of discharge and level of a liquid in free-flowing pipelines,” Izmer. Tekhn., No. 7, 45–50 (2013). I. D. Vel’t and Yu. V. Mikhaylova, “An electromagnetic method of measuring the rate of discharge and level of a liquid in free-flowing pipelines,” Izmer. Tekhn., No. 7, 45–50 (2013).
8.
go back to reference V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Control of nutation contour line in nuclear magnetic flowmeters,” Izv. Vuzov. Fizika, 58, No. 2, 8–13 (2015). V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Control of nutation contour line in nuclear magnetic flowmeters,” Izv. Vuzov. Fizika, 58, No. 2, 8–13 (2015).
9.
go back to reference M. P. Bronenko, I. P. Gulyaev, P. Yu. Gulyaev, and A. E. Seregin, “Measurement of the velocity and temperature of particles in the flow of a low-temperature plasma,” Izv. Vuzov. Fizika, 57, No. 3–2, 70–73 (2014). M. P. Bronenko, I. P. Gulyaev, P. Yu. Gulyaev, and A. E. Seregin, “Measurement of the velocity and temperature of particles in the flow of a low-temperature plasma,” Izv. Vuzov. Fizika, 57, No. 3–2, 70–73 (2014).
10.
go back to reference S. G. Proskurin, A. Yu. Potlov, and S. V. Frolov, “Doppler mapping of alternating flows with complex structure by optical coherent tomography,” Kvant. Elektronika, 44, No. 11, 1022–1028 (2014).CrossRef S. G. Proskurin, A. Yu. Potlov, and S. V. Frolov, “Doppler mapping of alternating flows with complex structure by optical coherent tomography,” Kvant. Elektronika, 44, No. 11, 1022–1028 (2014).CrossRef
11.
go back to reference K. G. Alekseeva and E. I. Borzenko, “The structure of a flow of Shvedov–Bingham liquid in a channel with an abrupt change in cross-section,” Izv. Vuzov. Fizika, 55, No. 7–2, 15–19 (2012). K. G. Alekseeva and E. I. Borzenko, “The structure of a flow of Shvedov–Bingham liquid in a channel with an abrupt change in cross-section,” Izv. Vuzov. Fizika, 55, No. 7–2, 15–19 (2012).
12.
go back to reference A. A. Popel’, A Magnetic Relaxation Method of Analysis of Inorganic Substances, Khimiya, Moscow (1978). A. A. Popel’, A Magnetic Relaxation Method of Analysis of Inorganic Substances, Khimiya, Moscow (1978).
13.
go back to reference A. A. Galichina, A. Yu. Karseev, V. V. Davydov, and V. I. Dudkin, “The use of oil fuel emulsions in power plants of enterprises,” Nauka i Obrazov., No. 2 (171), 243–247 (2013). A. A. Galichina, A. Yu. Karseev, V. V. Davydov, and V. I. Dudkin, “The use of oil fuel emulsions in power plants of enterprises,” Nauka i Obrazov., No. 2 (171), 243–247 (2013).
14.
go back to reference A. Leshe, Nuclear Induction [Russian translation], Inostrannaya Literatura, Moscow (1963). A. Leshe, Nuclear Induction [Russian translation], Inostrannaya Literatura, Moscow (1963).
15.
go back to reference V. V. Davydov, V. I. Dudkin, E. N. Velichko, and A. Yu. Karseev, “A nuclear-magnetic nutation teslameter for measurement of weak magnetic fields,” Metrologiya, No. 5, 32–41 (2014). V. V. Davydov, V. I. Dudkin, E. N. Velichko, and A. Yu. Karseev, “A nuclear-magnetic nutation teslameter for measurement of weak magnetic fields,” Metrologiya, No. 5, 32–41 (2014).
16.
go back to reference V. V. Davydov, E. N. Velichko, and A. Yu. Karseev, “A nuclear magnetic minirelaxometer for control of the state of liquid and viscous media,” Nauchno-Tekhn. Vest. Inform. Tekhnol., Mekh. Optiki, 15, No. 1, 115–121 (2015). V. V. Davydov, E. N. Velichko, and A. Yu. Karseev, “A nuclear magnetic minirelaxometer for control of the state of liquid and viscous media,” Nauchno-Tekhn. Vest. Inform. Tekhnol., Mekh. Optiki, 15, No. 1, 115–121 (2015).
17.
go back to reference V. V. Davydov, E. N. Velichko, V. I. Dudkin, and A. Yu. Karseev, “A nuclear magnetic relaxometer for express control of the state of condensed media,” Prib. Tekhn. Eksperim., No. 2, 72–76 (2015). V. V. Davydov, E. N. Velichko, V. I. Dudkin, and A. Yu. Karseev, “A nuclear magnetic relaxometer for express control of the state of condensed media,” Prib. Tekhn. Eksperim., No. 2, 72–76 (2015).
Metadata
Title
Nuclear Magnetic Spectrometer for Studying Flows of Liquid Media
Author
V. V. Davydov
Publication date
22-04-2017
Publisher
Springer US
Published in
Measurement Techniques / Issue 11/2017
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-017-1116-4

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