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ISSN: 1023-5086

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ISSN: 1023-5086

Scientific and technical

Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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УДК: 681.7.068

Fiber-optic system for simulating accidents in the cooling circuits of a nuclear power plant

For Russian citation (Opticheskii Zhurnal):

Давыдов В.В., Дудкин В.И., Величко Е.Н., Карсеев А.Ю. Волоконно-оптическая система имитации аварий в контурах охлаждения атомной энергетической установки // Оптический журнал. 2015. Т. 82. № 3. С. 4–8.

 

Davydov V.V., Dudkin V.I., Velichko E.N., Karseev A.Yu. Fiber-optic system for simulating accidents in the cooling circuits of a nuclear power plant [in Russian] // Opticheskii Zhurnal. 2015. V. 82. № 3. P. 4–8.

For citation (Journal of Optical Technology):

V. V. Davydov, V. I. Dudkin, E. N. Velichko, and A. Yu. Karseev, "Fiber-optic system for simulating accidents in the cooling circuits of a nuclear power plant," Journal of Optical Technology. 82(3), 132-135 (2015). https://doi.org/10.1364/JOT.82.000132

Abstract:

This article describes a fiber-optic accident simulator that has been developed for checking the operation of monitoring systems, based on nuclear magnetic meters for the cooling facilities of a nuclear power plant. The operation of the fiber-optic simulator has been checked and its dynamic characteristics investigated. Further approaches are determined for improving the operation of monitoring systems based on nuclear magnetic meters that use optical fibers and systems.

Keywords:

fiber-optic simulator, fiber optic, delay time, nuclear magnetic resonance signal

OCIS codes: 060.2330

References:

1. V. V. Davydov, V. I. Dudkin, and A. U. Karseev, “Nuclear magnetic flowmeter–spectrometer with fiber-optical communication line in cooling systems of atomic energy plants,” Opt. Mem. Neural Networks 22, No. 2, 112 (2013).
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3. V. V. Davydov, V. I. Dudkin, and A. Yu. Karseev, “Increasing the measurement accuracy of the relaxation constants of a flowing liquid in a nuclear magnetic spectrometer,” Izv. Vyssh. Uchebn. Zaved. Prib. 56, No. 10, 64 (2013).
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7. G. P. Agrawal, Light Wave Technology: Telecommunication Systems (Wiley-Interscience, Hoboken, N.J., 2005).
8. R. L. Freeman, Fiber-Optics Systems for Telecommunications (Wiley-Interscience, New York, 2002; Tekhnosfera, Moscow, 2012).