Preview

Herald of Dagestan State Technical University. Technical Sciences

Advanced search

REGULARITIES OF THE AVERAGE HEAT EXCHANGE FOR PIPES WITH ROUGH WALLS AND ROUGH FLAT CHANNELS UNDER ONE-SIDED THERMAL LOADING

https://doi.org/10.21822/2073-6185-2017-44-4-58-71

Abstract

Abstract. Objectives The aim of the present work is to carry out mathematical modelling of heat exchange in rough flat channels and round pipes with rough walls during one-sided heating. Methods The calculation was based on the superposition principle of turbulent viscosity. The solution of the problem of intensified heat transfer in a flat channel and in a round tube with rough walls was obtained using the Lyon's integral. Results A methodology for the theoretical computational heat exchange determination for flat rough channels and round pipes with rough walls during one-sided heating is developed, in contrast to existing theoretical approaches, on the basis of the principle of full viscosity superposition in a turbulent boundary layer. The analysis of the calculated heat exchange and hydraulic resistance values for flat rough channels and round rough pipes under one-sided heating shows that the increase in heat exchange is always less than the corresponding increase in hydraulic resistance, which is a disadvantage as compared to the channels with turbulators, all else being equal. The results of calculating the heat exchange for channels with rough walls at one-sided heating in an extended range of determinant parameters differ significantly from the corresponding data for channels with turbulators and are used to determine the level of heat exchange intensification. Conclusion An increase in the calculated values of the relative average heat exchange Nu / NuGLduring one-sided heating for flat rough channels and rough pipes having very high relative roughness values is significantly affected by both an increase in the relative roughness height h/R0 and an increase in the Re Reynolds number. The main advantage of solutions for averaged heat transfer for rough flat channels and round pipes under symmetrical thermal load, obtained according to the developed theory, is that they allow the calculation of heat exchange in rough pipes to be made in the case of large and very large relative heights of roughness protrusions, including large Reynolds numbers, which is typical for pipes of small diameters and narrow flat channels. An increase in the relative heat exchange in air due to an increase in the relative height of the roughness or the Reynolds number is accompanied by an even more significant increase in the hydraulic resistance. Calculated data on averaged heat transfer obtained in the work indicated that in the range of determinant parameters for flat rough channels with one-sided heating, the average heat exchange is lower by (4  10)% as compared to round rough pipes, all other things being equal.

About the Author

Igor' E. Lobanov
Moscow Aviation Institute (National Research University).
Russian Federation
4 Volokolamskoe Shosse, Moscow 125993.


References

1. Kalinin E.K., Dreytser G.A., Kopp I.Z. i dr. Effektivnye poverkhnosti teploobmena. M.: Energoatomizdat; 1998. 408 s. [Kalinin E.K., Dreytser G.A., Kopp I.Z. et al. Effective heat-exchange suraces. Moscow: Energoatomizdat; 1998. 408 p. (In Russ.)]

2. Lobanov I.E. Matematicheskoe modelirovanie intensifitsirovannogo teploobmena pri turbulentnomtechenii v kanalakh. Dissertatsiya na soiskanie uchenoy stepeni doktora tekhnicheskikh nauk. Moskva; 2005. 632 s. [Lobanov I.E. Mathematical modeling of intensified heat-exchange under the turbulent flow in the channels. Doctor of technical sciences dissertation.Moscow; 2005.632 p. (In Russ.)]

3. Lobanov I.E., Shteyn L.M. Perspektivnye teploobmennye apparaty s intensifitsirovannym teploobmenom dlya metallurgicheskogo proizvodstva. (Obshchaya teoriya intensifitsirovannogo teploobmena dlya teploobmennykh apparatov, primenyaemykh v sovremennom metallurgicheskom proizvodstve.) V 4-kh tomakh.Tom I. Matematicheskoe modelirovanie intensifitsirovannogo teploobmena pri turbulentnom techenii v kanalakh s primeneniemosnovnykhanaliticheskikh i chislennykhmetodov. M.: Izdatel'stvoAssotsiatsiistroitel'nykhvuzov; 2009. 405 s. [Lobanov I.E., Shteyn L.M. Perspective heat-exchange apparatus with intensified heat-exchange for metallurgical production. (General theory of intensified heatexchange for heat-exchange apparatus used in modern metallurgical production). In 4 volumes.Volume I. Mathematical modeling of intensified heat-exchange under the turbulent flow in channels using major analytical and numeric methods. Moscow: Izdatel'stvoAssotsiatsiistroitel'nykhvuzov; 2009. 405 p. (In Russ.)]

4. Lobanov I.E., Shteyn L.M. Perspektivnye teploobmennye apparaty s intensifitsirovannym teploobmenom dlya metallurgicheskogo proizvodstva. (Obshchaya teoriya intensifitsirovannogo teploobmena dlya teploobmennykh apparatov, primenyaemykh v sovremennom metallurgicheskom proizvodstve). V 4-kh tomakh Tom IV. Spetsial'nyeaspektymatematicheskogo modelirovaniya gidrogazodinamiki, teploobmena, a takzhe teploperedachi v teploobmennykh apparatakh s intensifitsirovannym teploobmenom. M.: MGAKKhiS; 2011. 343 s. [Lobanov I.E., Shteyn L.M. Perspective heatexchange apparatus with intensified heat-exchange for metallurgical production. (General theory of intensified heatexchange for heat-exchange apparatus used in modern metallurgical production). In 4 volumes.Volume II.Mathematical modeling of intensified heat-exchange under the turbulent flow in channels using minor analytical and numeric methods. Moscow: Izdatel'stvoAssotsiatsiistroitel'nykhvuzov; 2010. 290 p. (In Russ.)]

5. Lobanov I.E., Shteyn L.M. Perspektivnye teploobmennye apparaty s intensifitsirovannym teploobmenom dly ametallurgicheskogoproizvodstva. Obshchaya teoriya intensifitsirovannogo teploobmena dlya teploobmennykh apparatov, primenyaemykh v sovremennom metallurgicheskom proizvodstve). V 4-kh tomakh Tom IV. Spetsial'nyeaspektymatematicheskogo modelirovaniya gidrogazodinamiki, teploobmena, a takzhe teploperedachi v teploobmennykh apparatakh s intensifitsirovannym teploobmenom. M.: MGAKKhiS; 2010. 288 s. [Lobanov I.E., Shteyn L.M. Perspective heatexchange apparatus with intensified heat-exchange for metallurgical production. (General theory of intensified heatexchange for heat-exchange apparatus used in modern metallurgical production). In 4 volumes.Volume III.Mathematical modeling of intensified heat-exchange under the turbulent flow in channels using multi-layer, super-multi-layer and compound models of turbulent boundary layer. Moscow: MGAKKhiS; 2010. 288 p. (In Russ.)]

6. Lobanov I.E., Shteyn L.M. Perspektivnye teploobmennye apparaty s intensifitsirovannym teploobmenom dlya metallurgicheskogo proizvodstva. (Obshchaya teoriya intensifitsirovannogo teploobmena dlya teploobmennykh apparatov, primenyaemykh v sovremennom metallurgicheskom proizvodstve). V 4-kh tomakh Tom IV. Spetsial'nyeaspekty matematicheskogo modelirovaniya gidrogazodinamiki, teploobmena, a takzhe teploperedachi v teploobmennykh apparatakh s intensifitsirovannym teploobmenom. M.: MGAKKhiS; 2011. 343 s. [Lobanov I.E., Shteyn L.M. Perspective heat-exchange apparatus with intensified heat-exchange for metallurgical production. (General theory of intensified heat-exchange for heat-exchange apparatus used in modern metallurgical production). In 4 volumes.Volume IV. Special aspects of mathematical modeling of hydro-gas-dynamics, heat-exchange, and heat transfer in heat-exchange apparatus with intensified heatexchange. Moscow: MGAKKhiS; 2011. 343 p. (In Russ.)]

7. Lobanov I.E., Dotsenko A.I. Matematicheskoe modelirovanie predel'nogo teploobmena dlya turbulizirovannogo potoka v kanalakh. M.: MIKKhiS; 2008. 194 s. [Lobanov I.E., Dotsenko A.I. Mathematical modeling of terminal heat-exchange for turbulated flow in channels. Moscow: MIKKhiS; 2008. 194 p. (In Russ.)]

8. Ievlev V.M. Chislennoe modelirovanie turbulentnykh techeniy. M.: Nauka; 1990. 215 s. [Ievlev V.M. Numeric modeling of turbulent flows. Moscow: Nauka; 1990. 215 p. (In Russ.)]

9. Lyakhov V.K. Metod otnositel'nogo sootvetstviya pri raschetakh turbulentnykh pristenochnykh potokov. Saratov: Izdatel'stvo Saratovskogo universiteta; 1975. 123 s. [Lyakhov V.K. Method of relative correspondence during the calculations of turbulent near-wall flows. Saratov: Izdatel'stvoSaratovskogo universiteta; 1975. 123 p. (In Russ.)]

10. Lyakhov V.K., Migalin V.K. Effektteplovoy, ilidiffuzionnoy, sherokhovatosti. Saratov: Izdatel'stvoSaratovskogouniversiteta; 1989. 176 s. [Lyakhov V.K., Migalin V.K. Effect of heat, or diffusion roughness. Saratov: Izdatel'stvoSaratovskogouniversiteta; 1989. 176 p. (In Russ.)]

11. Millionshchikov M.D. Turbulentnye techeniya v pogranichnom sloe i v trubakh. M.: Nauka; 1969. 52 s. [Millionshchikov M.D. Turbulent flows in boundary layer and in pipes. Moscow: Nauka; 1969. 52 p. (In Russ.)]

12. Millionshchikov M.D. Turbulentnye techeniya v pristenochnom sloe i v trubakh. Atomnayaenergiya. 1970; 28(3):207-220. [Millionshchikov M.D. Turbulent flows in near-wall layer and in pipes. Atomic Energy. 1970; 28(3):207220. (In Russ.)]

13. Millionshchikov M.D. Turbulentnyyteplo- i massoobmen v trubakh s gladkimi i sherokhovatymistenkami. Atomnayaenergiya. 1971; 31(3):199-204. [Millionshchikov M.D. Turbulent heat- and mass-exchange in pipes with smooth and rough walls.Atomic Energy. 1971; 31(3):199-204. (In Russ.)]

14. Kutateladze S.S. Osnovyteoriiteploobmena. M.: Atomizdat; 1979. 416 s. [Kutateladze S.S. Fundamentals of heat-exchange theory. Moscow: Atomizdat; 1979. 416 p. (In Russ.)]

15. Dreytser G.A., Lobanov I.E. Issledovanie predel'noyintensifikatsiite ploobme na v trubakh zaschet iskusstvennoy turbulizatsii potoka. Teplofizika vysokikh temperatur. 2002;40(6):958-963. [Dreytser G.A., Lobanov I.E. Study of terminal heat-exchange intensification in pipes with artificial flow turbulisation. High Temperature. 2002;40(6):958-963. (In Russ.)]

16. Dreytser G.A., Lobanov I.E. Predel'nayaintensifikatsiyateploobmena v trubakh za schet iskusstvennoy turbulizatsii potoka. Inzhenerno-fizicheskiyzhurnal. 2003;76(1):46-51. [Dreytser G.A., Lobanov I.E. Terminal heat-exchange intensification in pipes with artificial flow turbulisation.Journal of Engineering Physics and Thermophysics. 2003;76(1):4651. (In Russ.)]

17. Novikov I.I., Voskresenskiy K.D. Prikladnaya termodinamika i teploperedacha. M.: Gosatomizdat; 1961. 548 s. [Novikov I.I., Voskresenskiy K.D. Applied thermodynamics and heat transfer. Moscow: Gosatomizdat; 1961. 548 p. (In Russ.)]

18. Novikov I.I., Voskresenskiy K.D. Prikladnaya termodinamika i teploperedacha. M.: Atomizdat; 1977. 349 s. [Novikov I.I., Voskresenskiy K.D. Applied thermodynamics and heat transfer. Moscow: Atomizdat; 1977. 349 p. (In Russ.)]

19. Lobanov I.E. Matematicheskoe modelirovanie predel'nogo teploobmena za schet turbulizatsii potoka pri turbulentnom techenii v ploskikh kanalakh s turbulizatorami. Materialy XXXIV Akademicheskikhchteniypokosmonavtike ―A ktual'nyeproblemy rossiyskoy kosmonavtiki‖.Moskva; 2010. S. 200-202. [Lobanov I.E. Mathematical modeling of terminal heat-exchange with flow turbulisation under the turbulent flow in the flat channels with turbulisators.Materials of XXXIV Academic readings about cosmonautics ―Relveant problems of Russian cosmonautics‖.Moscow; 2010. P. 200-202. (In Russ.)]

20. Lobanov I.E., Fleytlikh B.B. Modelirovanie intensifitsirovannogo teploobmena pri turbulentnom techenii v ploskikh kanalakh s periodicheskipoverkhnostnoras polozhennym i turbulizatorami potoka na bazese misloynoy modeli turbulentnogo pogranichnogo sloya. Fundamental'nye i prikladnyeproblemytekhniki i tekhnologii. 2011;2(286):42-50. [Lobanov I.E., Fleytlikh B.B. Modeling of intensified heat-exchange under the turbulent flow in the flat channels with flow turbulisators, periodically situated on the surface, based on 7-layer model of turbulent boundary layer. Fundamental and Applied Problems of Technics and technology. 2011;2(286):42-50. (In Russ.)]

21. Lobanov I.E., Fleytlikh B.B. Modelirovanie intensifitsirovannogo teploobmena pri turbulentnom techenii v ploskikh kanalakh s periodicheski poverkhnostno raspolozhennymi turbulizatorami potoka na bazesemisloynoymodeli turbulentnogo pogranichnogo sloya. Tezisy Mezhdunarodnoy nauchnoy shkoly ―Problemygazodinamiki i teploobmena v energeticheskikhtekhnologiyakh‖.Moskva; 2011. S. 50-52. [Lobanov I.E., Fleytlikh B.B. Modeling of intensified heatexchange under the turbulent flow in the flat channels with flow turbulisators, periodically situated on the surface, based on 7-layer model of turbulent boundary layer. Abstracts of International scientific school ―Problems of gas dynamics and heatexchange in energetic technologies ‖. Moscow; 2011. P. 50-52. (In Russ.)]

22. Lobanov I.E. Teoriya teploobmena pri turbulentnom techenii v ploskikhkanalakh s poverkhnostnoraspolozhennymi odnostoronnimi turbulizatorami potoka na baze semisloynoymodeli turbulentnogo pogranichnogo sloya. Moskovskoe nauchnoe obozrenie. 2012;4(1):7-12. [Lobanov I.E. Theory of heat exchange under turbulent flow in flat channels with with single-sided flow turbulisators, situated on the surface, based on 7-layer model of turbulent boundary layer.Moskovskoenauchnoeobozrenie. 2012;4(1):7-12. (In Russ.)]

23. Lobanov I.E. Analiticheskoe reshenie zadachi ob intensifitsirovannom teploobmene pr i turbulentnom techenii v ploskikh kanalakh s periodicheski poverkhnostnoras polozhennymi turbulizatoramipotoka na bazesemisloynoy modeli turbulentnogo pogranichnogo sloya. Nauchnoe obozrenie. 2012;2:375-387. [Lobanov I.E. Analytical solution of the problem of intensified heat exchange under turbulent flow in flat channels with flow turbulisators, periodically situated on the surface, based on 7-layer model of turbulent boundary layer. Science review. 2012;2:375-387. (In Russ.)]

24. Lobanov I.E. Teploobmen pri turbulentnom techenii v ploskikhkanalakh s ravnomernoraspolozhennym i poverkhnostnym i odnostoronnimi turbulizatorami potoka. Vestnik mashinostroeniya. 2012;8:13-17. [Lobanov I.E. Heat exchange under turbulent flow in flat channels with evenly situated surface single-sided flow turbulisators. Russian Engineering Research. 2012;8:13-17. (In Russ.)]

25. Lobanov I.E. Teoriya gidravlicheskogo soprotivleniya v sherokhovatykh trubakh. Vestnik mashinostroeniya. 2013;7:27-33. [Lobanov I.E. Theory of hydraulic resistanse in rough pipes. Russian Engineering Research. 2013;7:27-33. (In Russ.)]

26. Teploobmen v energeticheskikh ustanovkakh kosmicheskikh apparatov. Pod red. V.K. Koshkina. M.: Mashinostroenie; 1975. 272 s. [Heat exchange in energetic installations of cosmic apparatus. Koshkin V.K. (Ed.). Moscow: Mashinostroenie; 1975. 272 p. (In Russ.)]

27. Zhukauskas A.A. Konvektivnyy perenos v teploobmennikakh. M.: Nauka; 1982. 472 s. [Zhukauskas A.A. Convective transfer in heat-exchangers. Moscow: Nauka; 1982. 472 p. (In Russ.)]


Review

For citations:


Lobanov I.E. REGULARITIES OF THE AVERAGE HEAT EXCHANGE FOR PIPES WITH ROUGH WALLS AND ROUGH FLAT CHANNELS UNDER ONE-SIDED THERMAL LOADING. Herald of Dagestan State Technical University. Technical Sciences. 2017;44(4):58-71. (In Russ.) https://doi.org/10.21822/2073-6185-2017-44-4-58-71

Views: 664


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2073-6185 (Print)
ISSN 2542-095X (Online)