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Published in: Measurement Techniques 9/2019

03-12-2019

Measurement of Feedwater Flow Rate of Nuclear Power Plant Reactors

Author: I. A. Kirillov

Published in: Measurement Techniques | Issue 9/2019

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Abstract

Procedural, technical and operational difficulties that arise with the use of flowmeters, both ultrasonic flowmeters and flowmeters constructed with the use of constriction devices (orifice-based flowmeters), for measuring feedwater flow rates at nuclear power plant reactors are considered. Results of measurements of these flowmeters are used to calculate the thermal power of the reactor plant and are important for controlling the nuclear reactor. It is shown that periodic inspection of welded-in orifice devices used at nuclear power plants of Russian design is not possible. Practical aspects of tests of ultrasonic flowmeters under normal conditions with assigned high precision for operation under the conditions of a power-generating unit are considered. New approaches to evaluation (inspection) of the state of constriction devices used in cooling agent flowmeters that are not accessible to examination throughout the entire operating period at nuclear power plants are proposed. It is shown that a method of direct comparison of the results of simultaneous measurements with a more precise mobile ultrasonic flowmeter may be used to estimate the error of flowmeters constructed with the use of constriction devices. A unified method is suggested for evaluating the state of constriction devices without dismantling the devices from the pipeline based on information on the total error of the flowmeters along with a complex of measures for the development of technical, procedural, and managerial means of controlling the reliability of flowmeter measurements with the use of constriction devices and ultrasonic and flowmeters.

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Literature
1.
go back to reference G. F. W. Hauck, “The Roman aqueduct at Nimes,” Sci. Amer., 260, No. 3, 98–105 (1989).CrossRef G. F. W. Hauck, “The Roman aqueduct at Nimes,” Sci. Amer., 260, No. 3, 98–105 (1989).CrossRef
4.
go back to reference E. S. Saakov, V. P. Deriy, N. B. Shestakov, et al., “Direct measurements of the flow rates of coolant in the loops of GTsK and flow rates of feedwater of steam generators by FLUXUS ultrasonic flowmeters,” in: Safety, Efficiency, and Economics of Nuclear Energy: Proc. 8th Int. Sci. Techn. Conf. MNTK-2012, May 23–25, 2012, pp. 564–571, http://mntk.rosenergoatom.ru/mediafiles/u/files/MNTK-2012_web.pdf, acc. Dec. 12, 2018. E. S. Saakov, V. P. Deriy, N. B. Shestakov, et al., “Direct measurements of the flow rates of coolant in the loops of GTsK and flow rates of feedwater of steam generators by FLUXUS ultrasonic flowmeters,” in: Safety, Efficiency, and Economics of Nuclear Energy: Proc. 8th Int. Sci. Techn. Conf. MNTK-2012, May 23–25, 2012, pp. 564–571, http://​mntk.​rosenergoatom.​ru/​mediafiles/​u/​files/​MNTK-2012_​web.​pdf, acc. Dec. 12, 2018.
5.
go back to reference P. A. Kruglikov, Yu. V. Smolkin, K.V. Sokolov, and D.A. Sobolev, “Increasing the precision of the measurement of flow rates of coolants by ultrasonic flowmeters,” in: Innovations in Nuclear Energy: Proc. Conf. of Young Specialists, Moscow, Nov. 25 –26, 2015, Izd. NIKIET, Moscow (2015), pp. 367–375. P. A. Kruglikov, Yu. V. Smolkin, K.V. Sokolov, and D.A. Sobolev, “Increasing the precision of the measurement of flow rates of coolants by ultrasonic flowmeters,” in: Innovations in Nuclear Energy: Proc. Conf. of Young Specialists, Moscow, Nov. 25 –26, 2015, Izd. NIKIET, Moscow (2015), pp. 367–375.
6.
go back to reference V. D. Shmelev, Yu. F. Dragunov, V. P. Denisov, and I. N. Vasil’chenko, Active Zones of VVER for Nuclear Power Plants, IKTs Akademkniga, Moscow (2004). V. D. Shmelev, Yu. F. Dragunov, V. P. Denisov, and I. N. Vasil’chenko, Active Zones of VVER for Nuclear Power Plants, IKTs Akademkniga, Moscow (2004).
Metadata
Title
Measurement of Feedwater Flow Rate of Nuclear Power Plant Reactors
Author
I. A. Kirillov
Publication date
03-12-2019
Publisher
Springer US
Published in
Measurement Techniques / Issue 9/2019
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-019-01698-8

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