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Труды Института системного программирования РАН

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Турбулентная конвекция термоэлектричеством в охладительно-нагревательном устройстве

https://doi.org/10.15514/ISPRAS-2017-29(2)-8

Об авторах

Х. М. Редондо
Dept. Física, UPC BarcelonaTech; BEROTZA S.L., Noain, Pamplona
Испания


Дж. Д. Теллес-Альварес
Dept. Física, UPC BarcelonaTech; Dept. of Civil and Environmental Engineering (Institute Flumen); BEROTZA S.L., Noain, Pamplona
Испания


Х. М. Санчес
BEROTZA S.L., Noain, Pamplona
Испания


Список литературы

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2. Redondo J.M. Introduction to Vortex Theory in Turbulence Laboratory Visualization, UPC. Lecture Notes Dept. Fisica. PELNHoT, 2015. P. 160

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9. Vila T., Tellez J., Sánchez M. J., Sotillos L., Diez M. and Redondo J.M. Diffusion in fractal wakes and convective thermoelectric flows. GRA– EGU. 2014.V.16, p.2011.

10. Tarquis, A. M., Platonov A., Matulka A., Grau J., Sekula E., Diez M., Redondo J. M. Application of multifractal analysis to the study of SAR features and oil spills on the ocean surface. Nonlinear Processes in Geophysics 21, no. 2 2014: P. 439-450.

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13. Redondo J.M., Metais O. Mixing in Geophysical Flows. CIMNE, Barcelona. 1995, p. 415.

14. Linden P.F., Redondo. J.M. Turbulent mixing in Geophysical Flows CIMNE, Barcelona, 2001. p. 319.

15. Cantalapiedra I.R., Redondo J.M. Mixing in zero-mean-flow turbulence, Mixing in Geophysical Flows (Redondo J.M. and Metais O. Eds.) CIMNE, 1995, 127-146.

16. Versteeg T.A.M., Nieuwstadt F.T.M. Numerical simulation of buoyancy driven flow in enclosures. Mixing in Geophysical Flows (Redondo J.M. and Metais O. Eds.) CIMNE, 1995, 329-342

17. Redondo J.M. Mixing efficiency of different kinds of turbulent processes and instabilities; Appplications to the environment. CIMNE, 2001, 131-157.

18. Redondo J.M. Termodinámica de los procesos irreversibles, efectos termoeléctricos. Rev. Termoelectricidad, 1995 V.2.

19. Mahjoub O.B. Granata T., Redondo J.M. Scaling Laws in Geophysical Flows. Phys. Chem. Earth (B) V 26, no.4 p281-285, 2001.

20. Dalziel R. P. DigiFlow User Guide. Cambridge, England: Department of Applied Mathematics and Theoretical Physics (DAMTP) - University of Cambridge. 2012.

21. Tellez J., Gómez. M., Russo M., Redondo, J.M. Surface Flow Image Velocimetry (SFIV) for Hydraulics Applications In 18th International Symposium on the Application of Laser and Imaging Techniques to Fluid Mechanics. July 4-7 2016. Lisbon, Portiugal.

22. Leyton C., Redondo J.M, Gonzalez-Nieto P.L. and Tarquis A.M. Fractal behaviour of human fluxes.Waves and vortices in complex media, Moscow, IPM RAS. 2016. V.2 p.230-235.

23. Strijhak S. Redondo J.M. And Tellez J. Multifractal Analysis of a Wake for a Single Wind Turbine Proceedings Topical Problems of Fluid Mechanics 2017, Prague, 2017 Edited by David Šimurda and Tomáš Bodnár, pp. 275-284.


Рецензия

Для цитирования:


Редондо Х.М., Теллес-Альварес Д.Д., Санчес Х.М. Турбулентная конвекция термоэлектричеством в охладительно-нагревательном устройстве. Труды Института системного программирования РАН. 2017;29(2):215-230. https://doi.org/10.15514/ISPRAS-2017-29(2)-8

For citation:


Redondo J.M., Tellez J.D., Sanchez J.M. Turbulent convection by thermoelectricity in a cooling-heating didactive device. Proceedings of the Institute for System Programming of the RAS (Proceedings of ISP RAS). 2017;29(2):215-230. https://doi.org/10.15514/ISPRAS-2017-29(2)-8



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