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Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) 3/2018

02.12.2017 | Original Paper

Similarity and numerical analysis of the generalized Levèque problem to predict the thermal boundary layer

verfasst von: Ali Belhocine, Oday Ibraheem Abdullah

Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) | Ausgabe 3/2018

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Abstract

In the thermal entrance region, a thermal boundary layer develops and also reaches the circular tube center. The fully developed region is the zone in which the flow is both hydrodynamically and thermally developed. The heat flux will be higher near the inlet because the heat transfer coefficient is highest at the tube inlet where the thickness of the thermal boundary layer is zero, and decreases gradually to the fully developed value. In this paper, the assumptions implicit in Leveque’s approximation are re-examined, and the analytical solution of the problem with additional boundary conditions, for the temperature field and the boundary layer thickness through the long tube is presented. From the mathematical side, numerical techniques for solving the problem of fluid–structure interaction with a fully developed laminar incompressible Newtonian flow is described. By defining a similarity variable the governing equations are reduced to a dimensionless equation with an analytic solution in the entrance region. This report gives justification for the similarity variable via scaling analysis, details the process of converting to a similarity form, and presents a similarity solution. The analytical solutions are then checked against numerical solution programming by FORTRAN code obtained via using Runge–Kutta fourth order (RK4) method. Finally, others important thermal results obtained from this analysis, such as; approximate Nusselt number in the thermal entrance region was discussed in detail.

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Literatur
1.
Zurück zum Zitat García, M., Duque, J., Boulanger, P., Figueroa, P.: Computational steering of CFD simulations using a grid computing environment. Int. J. Interact. Des. Manuf. 9(1), 235–245 (2015)CrossRef García, M., Duque, J., Boulanger, P., Figueroa, P.: Computational steering of CFD simulations using a grid computing environment. Int. J. Interact. Des. Manuf. 9(1), 235–245 (2015)CrossRef
5.
Zurück zum Zitat Bahar, Y.N., Landrieu, J., Pére, C., Nicolle, C.: CAD data workflow toward the thermal simulation and visualization in virtual reality. Int. J. Interact. Des. Manuf. 8(4), 283–292 (2014)CrossRef Bahar, Y.N., Landrieu, J., Pére, C., Nicolle, C.: CAD data workflow toward the thermal simulation and visualization in virtual reality. Int. J. Interact. Des. Manuf. 8(4), 283–292 (2014)CrossRef
6.
Zurück zum Zitat Amaya, A.F.D., Torres, A.G.D., Maya, D.A.A.: First and second thermodynamic law analyses applied to spark ignition engines modelling and emissions prediction. Int. J. Interact. Des. Manuf. 10(4), 401–415 (2016)CrossRef Amaya, A.F.D., Torres, A.G.D., Maya, D.A.A.: First and second thermodynamic law analyses applied to spark ignition engines modelling and emissions prediction. Int. J. Interact. Des. Manuf. 10(4), 401–415 (2016)CrossRef
8.
Zurück zum Zitat Herwig, H., Schäfer, P.: Acombined perturbation/finite-difference procedure applied to temperature effects and stability in a laminar boundary layer. Arch. Appl. Mech. 66(4), 264–272 (1996)CrossRefMATH Herwig, H., Schäfer, P.: Acombined perturbation/finite-difference procedure applied to temperature effects and stability in a laminar boundary layer. Arch. Appl. Mech. 66(4), 264–272 (1996)CrossRefMATH
9.
Zurück zum Zitat Xu, H.: Homotopy analysis of a self-similar boundary-flow driven by a power-law shear. Arch. Appl. Mech. 78(4), 311–320 (2008)CrossRefMATH Xu, H.: Homotopy analysis of a self-similar boundary-flow driven by a power-law shear. Arch. Appl. Mech. 78(4), 311–320 (2008)CrossRefMATH
10.
Zurück zum Zitat Van Gorder, R.A., Vajravelu, K.: A note on flow geometries and the similarity solutions of the boundary layer equations for a nonlinearly stretching sheet. Arch. Appl. Mech. 80(11), 1329–1332 (2010)CrossRefMATH Van Gorder, R.A., Vajravelu, K.: A note on flow geometries and the similarity solutions of the boundary layer equations for a nonlinearly stretching sheet. Arch. Appl. Mech. 80(11), 1329–1332 (2010)CrossRefMATH
11.
Zurück zum Zitat Maddahian, R., Kebriaee, A., Farhanieh, B., Firoozabadi, B.: Analytical investigation of boundary layer growth and swirl intensity decay rate in a pipe. Arch. Appl. Mech. 81(4), 489–501 (2011)CrossRefMATH Maddahian, R., Kebriaee, A., Farhanieh, B., Firoozabadi, B.: Analytical investigation of boundary layer growth and swirl intensity decay rate in a pipe. Arch. Appl. Mech. 81(4), 489–501 (2011)CrossRefMATH
12.
Zurück zum Zitat Kuzmin, A.: Transonic flow instability in the entrance region of a channel with breaks of walls. Arch. Appl. Mech. 87(8), 1269–1279 (2017) Kuzmin, A.: Transonic flow instability in the entrance region of a channel with breaks of walls. Arch. Appl. Mech. 87(8), 1269–1279 (2017)
13.
Zurück zum Zitat Baehr, H., Stephan, K.: Heat Transfer. Springer, Berlin (1998)MATH Baehr, H., Stephan, K.: Heat Transfer. Springer, Berlin (1998)MATH
14.
Zurück zum Zitat Stephan, K.: Warmeubergang und Druckabfall bei Nicht Ausgebildeter Laminar Stromung in Rohren und in Ebenen Spalten. Chem-Ing-Tech 31, 773–778 (1959)CrossRef Stephan, K.: Warmeubergang und Druckabfall bei Nicht Ausgebildeter Laminar Stromung in Rohren und in Ebenen Spalten. Chem-Ing-Tech 31, 773–778 (1959)CrossRef
15.
Zurück zum Zitat Garimella, S., Dowling, W.J., Van der Veen, M., Killion, J.: Heat transfer coefficients for simultaneously developing flow in rectangular tubes. In: Proceedings of the 2000 International Mechanical Engineering Congress and Exposition, vol. 2, pp. 3–11 (2000) Garimella, S., Dowling, W.J., Van der Veen, M., Killion, J.: Heat transfer coefficients for simultaneously developing flow in rectangular tubes. In: Proceedings of the 2000 International Mechanical Engineering Congress and Exposition, vol. 2, pp. 3–11 (2000)
16.
Zurück zum Zitat Asako, Y., Nakamura, H., Faghri, M.: Developing laminar flow and heat transfer in the entrance region of regular polygonal ducts. Int. J. Heat Mass Transf. 31, 2590–2593 (1988)CrossRef Asako, Y., Nakamura, H., Faghri, M.: Developing laminar flow and heat transfer in the entrance region of regular polygonal ducts. Int. J. Heat Mass Transf. 31, 2590–2593 (1988)CrossRef
17.
Zurück zum Zitat Shah, R.K., London, A.L.: Laminar Flow Forced Convection in Ducts. Academic Press, New York (1978) Shah, R.K., London, A.L.: Laminar Flow Forced Convection in Ducts. Academic Press, New York (1978)
18.
Zurück zum Zitat Kakac, S., Shah, R.K., Aung, W.: Handbook of Single Phase Convective Heat Transfer. Wiley, New York (1987) Kakac, S., Shah, R.K., Aung, W.: Handbook of Single Phase Convective Heat Transfer. Wiley, New York (1987)
19.
Zurück zum Zitat Ebadian, M.A., Dong, Z.F.: Forced convection internal flows in ducts. In: Rohsenov, W.M., Hartnett, J.P., Cho, Y.I. (eds.) Handbook of Heat Transfer, 3rd edn, pp. 5.1–5.137. McGraw-Hill, New York (1998) Ebadian, M.A., Dong, Z.F.: Forced convection internal flows in ducts. In: Rohsenov, W.M., Hartnett, J.P., Cho, Y.I. (eds.) Handbook of Heat Transfer, 3rd edn, pp. 5.1–5.137. McGraw-Hill, New York (1998)
20.
Zurück zum Zitat Kakac, S., Yener, Y.: Laminar forced convection in the combined entrance region of ducts. In: Kakac, S., Shah, R.K., Bergles, A.E. (eds.) Low Reynolds Number Heat Exchangers, pp. 165–204. Hemisphere Publishing, Washington (1983) Kakac, S., Yener, Y.: Laminar forced convection in the combined entrance region of ducts. In: Kakac, S., Shah, R.K., Bergles, A.E. (eds.) Low Reynolds Number Heat Exchangers, pp. 165–204. Hemisphere Publishing, Washington (1983)
21.
Zurück zum Zitat Hausen, H.: Darstellung des Wärmeübergangs in Rohren durch verallgemeinerte Potenzbezie-hungen. VDI-Zeitung, Suppl. Verfahrenstechnik 4, 91–98 (1943) Hausen, H.: Darstellung des Wärmeübergangs in Rohren durch verallgemeinerte Potenzbezie-hungen. VDI-Zeitung, Suppl. Verfahrenstechnik 4, 91–98 (1943)
22.
Zurück zum Zitat Churchill, S.W., Ozoe, H.: Correlations for laminar forced convection with uniform heating in flow over a plate and in developing and fully developed flow in a tube. ASME J. Heat Transf. 95, 78–84 (1973)CrossRef Churchill, S.W., Ozoe, H.: Correlations for laminar forced convection with uniform heating in flow over a plate and in developing and fully developed flow in a tube. ASME J. Heat Transf. 95, 78–84 (1973)CrossRef
23.
Zurück zum Zitat Churchill, S.W., Ozoe, H.: Correlations for laminar forced convection in flow over an isothermal flat plate and in developing and fully developed flow in an isothermal tube. ASME J. Heat Transf. 95, 416–419 (1973)CrossRef Churchill, S.W., Ozoe, H.: Correlations for laminar forced convection in flow over an isothermal flat plate and in developing and fully developed flow in an isothermal tube. ASME J. Heat Transf. 95, 416–419 (1973)CrossRef
24.
Zurück zum Zitat Yilmaz, T., Cihan, E.: General equation for heat transfer for laminar flow in ducts of arbitrary cross-sections. Int. J. Heat Mass Transf. 36(13), 3265–3270 (1993)CrossRef Yilmaz, T., Cihan, E.: General equation for heat transfer for laminar flow in ducts of arbitrary cross-sections. Int. J. Heat Mass Transf. 36(13), 3265–3270 (1993)CrossRef
25.
Zurück zum Zitat Yilmaz, T., Cihan, E.: An equation for laminar flow heat transfer for constant heat flux boundary condition in ducts of arbitrary cross-sectional area. J. Heat Transf. 117(1), 765–766 (1995)CrossRef Yilmaz, T., Cihan, E.: An equation for laminar flow heat transfer for constant heat flux boundary condition in ducts of arbitrary cross-sectional area. J. Heat Transf. 117(1), 765–766 (1995)CrossRef
26.
Zurück zum Zitat Belhocine, A., Wan Omar, W.Z.: Numerical study of heat convective mass transfer in a fully developed laminar flow with constant wall temperature. Case Stud. Therm. Eng. 6, 116–127 (2015)CrossRef Belhocine, A., Wan Omar, W.Z.: Numerical study of heat convective mass transfer in a fully developed laminar flow with constant wall temperature. Case Stud. Therm. Eng. 6, 116–127 (2015)CrossRef
27.
Zurück zum Zitat Belhocine, A.: Numerical study of heat transfer in fully developed laminar flow inside a circular tube. Int. J. Adv. Manuf. Technol. 85(9), 2681–2692 (2016)CrossRef Belhocine, A.: Numerical study of heat transfer in fully developed laminar flow inside a circular tube. Int. J. Adv. Manuf. Technol. 85(9), 2681–2692 (2016)CrossRef
28.
Zurück zum Zitat Belhocine, A., Wan Omar, W.Z.: An analytical method for solving exact solutions of the convective heat transfer in fully developed laminar flow through a circular tube. Heat Transf. Asian Res. 46(8), 1342–1353 (2017)CrossRef Belhocine, A., Wan Omar, W.Z.: An analytical method for solving exact solutions of the convective heat transfer in fully developed laminar flow through a circular tube. Heat Transf. Asian Res. 46(8), 1342–1353 (2017)CrossRef
29.
Zurück zum Zitat Bird, R.B., Stewart, W.E., Lightfoot, E.N.: Transport Phenomena. Wiley, New York (1960) Bird, R.B., Stewart, W.E., Lightfoot, E.N.: Transport Phenomena. Wiley, New York (1960)
30.
Zurück zum Zitat Lévêque, M.A.: Les lois de la transmission de chaleur par convection. Annales des Mines, Memoires, Series 12, 13, 201–299, 305–362, 381–415 (1928) as cited by J. Newman, Trans. ASME J. Heat Transfer 91, 177 (1969) Lévêque, M.A.: Les lois de la transmission de chaleur par convection. Annales des Mines, Memoires, Series 12, 13, 201–299, 305–362, 381–415 (1928) as cited by J. Newman, Trans. ASME J. Heat Transfer 91, 177 (1969)
31.
Zurück zum Zitat Abramowitz, M., Stegun, I.: Handbook of Mathematical Functions. Dover, New York (1965)MATH Abramowitz, M., Stegun, I.: Handbook of Mathematical Functions. Dover, New York (1965)MATH
Metadaten
Titel
Similarity and numerical analysis of the generalized Levèque problem to predict the thermal boundary layer
verfasst von
Ali Belhocine
Oday Ibraheem Abdullah
Publikationsdatum
02.12.2017
Verlag
Springer Paris
Erschienen in
International Journal on Interactive Design and Manufacturing (IJIDeM) / Ausgabe 3/2018
Print ISSN: 1955-2513
Elektronische ISSN: 1955-2505
DOI
https://doi.org/10.1007/s12008-017-0434-8

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