THE FACILITY FOR EXPERIMENTAL VALIDATION OF HYDRODYNAMICS AND HEAT EXCHANGE SIMULATION OF THE GAS FLOW OVER THE SOLIDS OF REVOLUTION
https://doi.org/10.15518/isjaee.2015.08-09.004
Abstract
The paper gives the problem statement of the computer simulation for the investigation of the gas flux over the suspended (levitating) spherical elements in the channel. The necessity of the simulation results validation for the further model development is shown. The requirements for the methods of experimental validation of simulation results are formulated. Given are the results of the experimental facility and measurement methods preparation for the investigation of hydrodynamics of the gas flow over the solids of revolution.
About the Authors
V. A. KlimovaRussian Federation
senior lecturer of Nuclear power plants and renewable energy sources department, UrFU
Yu. E. Nemikhin
Russian Federation
senior lecturer of Nuclear power plants and renewable energy sources department, UrFU
S. E. Shcheklein
Russian Federation
doctor of technical science, professor, Urals State Technical University “Atomic Stations and Renewable Energy Sources” Department head
References
1. Lozoveckij V.V. Razvitie vysokotemperaturnyh gazovyh reaktorov // Аtomnaâ tehnika za rubežom. 2002. № 7. S. 8-12.
2. Kazuhiko Kunitomi, Xing Yan, Shusaku Shiozawa, Nozomu Fujimoto. GTHTR300C For hydrogen cogeneration // 2nd International topical meeting on high temperature reactor technology. Beijing, China, September 22-24, 2004.
3. Bogoâvlenskij R.G. Gidrodinamika i teploobmen v vysokotemperaturnyh âdernyh reaktorah s šarovymi tvèlami. M.: Аtomizdat, 1978.
4. Solid works flow simulation 2012 technical reference. Solid Works, 2012.
5. Jung-Jae LEE a, Su-Jong YOON a, Goon-Cherl PARK a & Won-Jae LEE. Turbulence-induced Heat transfer in PBMR core using LES and RANS // Journal of Nuclear Science and Technology. 2007. Vol. 44, No. 7. P. 985.
6. Maslov А.А., Mironov S.G. Èksperimental'noe issledovanie obtekaniâ poluzamknutoj cilindričeskoj polosti giperzvukovym potokom nizkoj plotnosti // Izv. RАN. MŽG. 1996. № 6. S. 155−160.
7. Scarano F. Overwiew of PIV in supersonic flows. Particle Image Velocimetry / Ed. by A. Schroeder, C.E. Willert. Springer-Verlag, Berlin, Heidelberg, 2008. Р. 445−463.
8. Tokarev M.P., Markovič D.M., Bil'skij А.V. Аdaptivnye algoritmy obrabotki izobraženij častic dlâ rasčeta mgnovennyh polej skorosti // Vyčislitel'nye tehnologii. 2007. T. 12, № 3. S. 109−131.
9. Аlekseenko S.V., Bil'skij А.V., Markovič D.M. Primenenie metoda cifrovoj trassernoj vizualizacii dlâ analiza turbulentnyh potokov s periodičeskoj sostavlâûŝej // Pribory i tehnika èksperimenta. 2004. T. 47. № 5. S. 703-710.
10. Puzyrev L.N., Âroslavcev M.I. Stabilizaciâ parametrov gaza v forkamere giperzvukovoj aèrodina-mičeskoj truby // Izv. SO АN. Seriâ tehničeskaâ. 1990. Vyp. 5. S. 135−139.
11. Scarano F. Overwiew of PIV in supersonic flows. Particle image velocimetry / Ed. by A. Schroeder, C.E. Willert. Springer-Verlag, Berlin, Heidelberg, 2008. R. 445−463.
12. Mironov S.G., Cyrûl'nikov I.S. Issledovanie volnovogo polâ kontroliruemyh periodičeskih voz-muŝenij dvuh istočnikov // Teplofizika i aèromehanika. 2005. T. 12, № 3. S. 379−386.
13. Аhmetbekov E.K., Bil'skij А.V., Markovič D.M., Maslov А.А., Polivanov P.А., Cyrûl'nikov I.S., Âroslavcev M.I. Primenenie lazernogo izmeritel'nogo kompleksa «POLIS» dlâ izmerenij polej skorostej v sverhzvukovom potoke v aèrodinamičeskih trubah // Teplofizika i aèromehanika. 2009. T. 16, № 3. S. 343-352.
Review
For citations:
Klimova V.A., Nemikhin Yu.E., Shcheklein S.E. THE FACILITY FOR EXPERIMENTAL VALIDATION OF HYDRODYNAMICS AND HEAT EXCHANGE SIMULATION OF THE GAS FLOW OVER THE SOLIDS OF REVOLUTION. Alternative Energy and Ecology (ISJAEE). 2015;(8-9):33-40. (In Russ.) https://doi.org/10.15518/isjaee.2015.08-09.004