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Erschienen in: Measurement Techniques 3/2018

04.07.2018 | STATE STANDARDS

Get 172–2016, State Primary Standard of Unit of Surface Density of Thermal Flux

Erschienen in: Measurement Techniques | Ausgabe 3/2018

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Abstract

The composition of the State Primary Standard of the unit of surface heat flux density, GET 172–2016, its metrological characteristics, and operating principle are presented.

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Literatur
1.
Zurück zum Zitat O. A. Gerashchenko, Foundations of Thermometry, Naukova Dumka, Kiev (1971). O. A. Gerashchenko, Foundations of Thermometry, Naukova Dumka, Kiev (1971).
2.
Zurück zum Zitat E. Bales, M. Bomberg, and G. Couille, Applications of Heat Flux Transducers: A Select and Annotated Bibliography, American Society for Testing and Materials, Philadelphia (1985), pp. 223–236.CrossRef E. Bales, M. Bomberg, and G. Couille, Applications of Heat Flux Transducers: A Select and Annotated Bibliography, American Society for Testing and Materials, Philadelphia (1985), pp. 223–236.CrossRef
3.
Zurück zum Zitat S. Z. Sapozhnikov, Foundations of Gradient Thermometry, Izd. SPB GPU, St. Petersburg (2012). S. Z. Sapozhnikov, Foundations of Gradient Thermometry, Izd. SPB GPU, St. Petersburg (2012).
4.
Zurück zum Zitat T. G. Grishchenko (ed.), L. V. Dekusha, L. I. Vorob’ev, et al., Thermometry: Theory, Metrology, Applications: Monograph, Book 1, Methods and Instruments for Measurements of Heat Flux, Institute of Technical Thermophysics, National Academy of Sciences of Ukraine, Kiev (2017). T. G. Grishchenko (ed.), L. V. Dekusha, L. I. Vorob’ev, et al., Thermometry: Theory, Metrology, Applications: Monograph, Book 1, Methods and Instruments for Measurements of Heat Flux, Institute of Technical Thermophysics, National Academy of Sciences of Ukraine, Kiev (2017).
6.
Zurück zum Zitat N. I. Rybak, V. Ya. Cherepanov, E. M. Sheinin, and V. A. Yamshanov, “State measurement chain for instruments that measure the surface heat flux density,” Zakonodat. Prikl. Metrol., No. 5, 27–31 (2015). N. I. Rybak, V. Ya. Cherepanov, E. M. Sheinin, and V. A. Yamshanov, “State measurement chain for instruments that measure the surface heat flux density,” Zakonodat. Prikl. Metrol., No. 5, 27–31 (2015).
7.
Zurück zum Zitat O. M. Lozinskaya, N. I. Rybak, V. Ya. Cherepanov, et al., “State Primary Standard of the unit of surface heat flux density,” Izmer. Tekhn., No. 10, 52–55 (2009). O. M. Lozinskaya, N. I. Rybak, V. Ya. Cherepanov, et al., “State Primary Standard of the unit of surface heat flux density,” Izmer. Tekhn., No. 10, 52–55 (2009).
8.
Zurück zum Zitat EUROMET Project No. 426, Intercomparison of Heat Flux Sensors. Final Report, MKEH Hungarian Trade Licensing Office, Thermometry Department, April, 2010. EUROMET Project No. 426, Intercomparison of Heat Flux Sensors. Final Report, MKEH Hungarian Trade Licensing Office, Thermometry Department, April, 2010.
9.
Zurück zum Zitat O. A. Gerashchenko, T. G. Grishchenko, A. N. Kalinin, et al., “Fetaures of conductive calibration of heat flux transducers in an adiabatic vacuum calorimeter,” Prom. Teplotekhn., 6, No. 5, 60–64 (1984). O. A. Gerashchenko, T. G. Grishchenko, A. N. Kalinin, et al., “Fetaures of conductive calibration of heat flux transducers in an adiabatic vacuum calorimeter,” Prom. Teplotekhn., 6, No. 5, 60–64 (1984).
10.
Zurück zum Zitat E. A. Tombasov, O. M. Lozinskaya, and V. Ya. Cherepanov, “Calibrating device for graduation and verifi cation of heat flux transducers,” Metrologiya, No. 1, 34–38 (1987). E. A. Tombasov, O. M. Lozinskaya, and V. Ya. Cherepanov, “Calibrating device for graduation and verifi cation of heat flux transducers,” Metrologiya, No. 1, 34–38 (1987).
11.
Zurück zum Zitat V. Ya. Cherepanov, “Methods and instruments for determining the metrological characteristics of heat fl ux contact transducers,” Izmer. Tekhn., No. 8, 17–21 (2004). V. Ya. Cherepanov, “Methods and instruments for determining the metrological characteristics of heat fl ux contact transducers,” Izmer. Tekhn., No. 8, 17–21 (2004).
12.
Zurück zum Zitat N. A. Vikhareva, A. D. Zonova, D. P. Trotsenko, et al., “Development and investigation of new methods and reference instruments for metrological assurance of thermometry,” Pribory, No. 10, 1–8 (2012). N. A. Vikhareva, A. D. Zonova, D. P. Trotsenko, et al., “Development and investigation of new methods and reference instruments for metrological assurance of thermometry,” Pribory, No. 10, 1–8 (2012).
Metadaten
Titel
Get 172–2016, State Primary Standard of Unit of Surface Density of Thermal Flux
Publikationsdatum
04.07.2018
Erschienen in
Measurement Techniques / Ausgabe 3/2018
Print ISSN: 0543-1972
Elektronische ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-018-1408-3

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