Skip to main content
Top
Published in:
Cover of the book

2017 | OriginalPaper | Chapter

1. Introduction

Author : Yuri B. Zudin

Published in: Theory of Periodic Conjugate Heat Transfer

Publisher: Springer Berlin Heidelberg

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Real stationary processes of heat transfer, as a rule, can be considered stationary only on the average. Actually (except for the purely laminar cases), flows are always subjected to various periodic, quasiperiodic, and other casual oscillations of velocities, pressure, temperatures, momentum and energy fluxes, vapor content and interphase boundaries about their average values.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Hinze JO (1975) Turbulence. McGraw-Hill, New York Hinze JO (1975) Turbulence. McGraw-Hill, New York
2.
go back to reference Dietz C, Henze M, Neumann SO, von Wolfersdorf J, Weigand B (2005) Numerical and experimental investigation of heat transfer and fluid flow around a vortex generator using explicit algebraic models for the turbulent heat flux. In: Proceedings of the 17th international symposium on airbreathing engines, Munich, Germany, Paper ISABE-2005-1197 Dietz C, Henze M, Neumann SO, von Wolfersdorf J, Weigand B (2005) Numerical and experimental investigation of heat transfer and fluid flow around a vortex generator using explicit algebraic models for the turbulent heat flux. In: Proceedings of the 17th international symposium on airbreathing engines, Munich, Germany, Paper ISABE-2005-1197
3.
5.
go back to reference Carslaw HS, Jaeger JC (1992) Conduction of heat in solids. Clarendon Press, London, OxfordMATH Carslaw HS, Jaeger JC (1992) Conduction of heat in solids. Clarendon Press, London, OxfordMATH
6.
go back to reference Wallis GB (1969) One-dimensional two-phase flow. McGraw-Hill, New York Wallis GB (1969) One-dimensional two-phase flow. McGraw-Hill, New York
7.
go back to reference Mayinger F (1982) Strömung und Wärmeübergang in Gas-Flüssigkeits-Gemischen. Springer, Wien, New YorkCrossRef Mayinger F (1982) Strömung und Wärmeübergang in Gas-Flüssigkeits-Gemischen. Springer, Wien, New YorkCrossRef
8.
go back to reference Kapitsa PL (1948) Wave flow of thin layers of a viscous liquid. Part 1. Free flow. Zh Eksp Teor Fiz 18(1):1–28 (in Russian) Kapitsa PL (1948) Wave flow of thin layers of a viscous liquid. Part 1. Free flow. Zh Eksp Teor Fiz 18(1):1–28 (in Russian)
9.
go back to reference Kapitsa PL, Kapitsa SP (1949) Wave flow of thin layers of a viscous liquid. Part II. Fluid flow in the presence of continuous gas flow and heat transfer. Zh Eksp Teor Fiz 19(2):105–120 (in Russian) Kapitsa PL, Kapitsa SP (1949) Wave flow of thin layers of a viscous liquid. Part II. Fluid flow in the presence of continuous gas flow and heat transfer. Zh Eksp Teor Fiz 19(2):105–120 (in Russian)
10.
go back to reference Corino ER, Brodkey RS (1969) A visual investigation of the wall region in turbulent flow. J Fluid Mech 37(1):1–30CrossRef Corino ER, Brodkey RS (1969) A visual investigation of the wall region in turbulent flow. J Fluid Mech 37(1):1–30CrossRef
11.
go back to reference Kim HT, Kline SJ, Reynolds WC (1971) The production of turbulence near a smooth wall in a turbulent boundary layer. J Fluid Mech 50(1):133–160CrossRef Kim HT, Kline SJ, Reynolds WC (1971) The production of turbulence near a smooth wall in a turbulent boundary layer. J Fluid Mech 50(1):133–160CrossRef
12.
go back to reference Reyer V (2002) Ein Verfahren zur simultanen Berechnung gekoppelter transienter Temperaturfelder in Strömungen und Strukturen. Dissertation, Berlin Technical University Reyer V (2002) Ein Verfahren zur simultanen Berechnung gekoppelter transienter Temperaturfelder in Strömungen und Strukturen. Dissertation, Berlin Technical University
13.
go back to reference Webster RS (2001) A numerical study of the conjugate conduction-convection heat transfer problem. Dissertation, Michigan State University Webster RS (2001) A numerical study of the conjugate conduction-convection heat transfer problem. Dissertation, Michigan State University
14.
go back to reference Gorenflo D (2002) Behältersieden (Sieden bei freier Konvektion). Springer, Berlin, VDI - Wärmeatlas, Hab Gorenflo D (2002) Behältersieden (Sieden bei freier Konvektion). Springer, Berlin, VDI - Wärmeatlas, Hab
15.
go back to reference Schlichting H, Gersten K (1997) Grenzschicht-Theorie. Springer, Berlin, Heidelberg, New YorkCrossRef Schlichting H, Gersten K (1997) Grenzschicht-Theorie. Springer, Berlin, Heidelberg, New YorkCrossRef
16.
go back to reference Cebeci T, Bradshaw P (1984) Physical and computational aspects of convective heat transfer. Springer, New YorkCrossRefMATH Cebeci T, Bradshaw P (1984) Physical and computational aspects of convective heat transfer. Springer, New YorkCrossRefMATH
17.
go back to reference Ametistov EV, Grigoriev VA, Pavlov YM (1972) Effect of thermophysical properties of heating surface material on heat transfer during boiling of water and ethanol. High Temp 10:821–823 Ametistov EV, Grigoriev VA, Pavlov YM (1972) Effect of thermophysical properties of heating surface material on heat transfer during boiling of water and ethanol. High Temp 10:821–823
18.
go back to reference Grigoriev VA, Pavlov YM, Ametisov EV, Klimenko AV, Klimenko VV (1977) Concerning the influence of thermal properties of heating surface material on heat transfer intensity of nucleate pool boiling of liquids including cryogenic ones. Cryogenics 2:94–96CrossRef Grigoriev VA, Pavlov YM, Ametisov EV, Klimenko AV, Klimenko VV (1977) Concerning the influence of thermal properties of heating surface material on heat transfer intensity of nucleate pool boiling of liquids including cryogenic ones. Cryogenics 2:94–96CrossRef
19.
go back to reference Stephan K (1992) Heat transfer in condensation and boiling. Springer, Berlin, Heidelberg, New YorkCrossRef Stephan K (1992) Heat transfer in condensation and boiling. Springer, Berlin, Heidelberg, New YorkCrossRef
20.
go back to reference Habib MA, Attya AM, Said SAM, Eid AI, Aly AZ (2004) Heat transfer characteristics and Nusselt number correlation of turbulent pulsating pipe air flows. Heat Mass Transf 40:307–318CrossRef Habib MA, Attya AM, Said SAM, Eid AI, Aly AZ (2004) Heat transfer characteristics and Nusselt number correlation of turbulent pulsating pipe air flows. Heat Mass Transf 40:307–318CrossRef
21.
go back to reference Yakhot A, Arad M, Ben-Dor G (1999) Numerical investigation of a laminar pulsating flow in a rectangular duct. Int J Numer Meth Fluids 29:935–950CrossRefMATH Yakhot A, Arad M, Ben-Dor G (1999) Numerical investigation of a laminar pulsating flow in a rectangular duct. Int J Numer Meth Fluids 29:935–950CrossRefMATH
22.
go back to reference Walther Ch, Kühl H-D, Pfeffer Th, Schulz S (1998) Influence of developing flow on the heat transfer in laminar oscillating pipe flow. Forsch Ingenieurwes 64:55–64CrossRef Walther Ch, Kühl H-D, Pfeffer Th, Schulz S (1998) Influence of developing flow on the heat transfer in laminar oscillating pipe flow. Forsch Ingenieurwes 64:55–64CrossRef
23.
go back to reference Walther C, Kühl H-D, Schulz S (2000) Numerical investigations on the heat transfer in turbulent oscillating pipe flow. Heat Mass Transfer 36:135–141CrossRef Walther C, Kühl H-D, Schulz S (2000) Numerical investigations on the heat transfer in turbulent oscillating pipe flow. Heat Mass Transfer 36:135–141CrossRef
24.
go back to reference Mosyak A, Pogrebnyak E, Hetsroni G (2001) Effect of constant heat flux boundary condition on wall temperature fluctuations. ASME J Heat Transfer 123:213–218CrossRef Mosyak A, Pogrebnyak E, Hetsroni G (2001) Effect of constant heat flux boundary condition on wall temperature fluctuations. ASME J Heat Transfer 123:213–218CrossRef
25.
go back to reference Dolinskiy AA, Dorfman AS, Davydenko BV (1989) Conjugate heat and mass transfer in continuous processes of convective drying. Int J Heat Mass Transfer 34:2883–2889CrossRefMATH Dolinskiy AA, Dorfman AS, Davydenko BV (1989) Conjugate heat and mass transfer in continuous processes of convective drying. Int J Heat Mass Transfer 34:2883–2889CrossRefMATH
26.
go back to reference Dorfman AS (2004) Transient heat transfer between a semi-infinite hot plate and a flowing cooling liquid film. ASME J Heat Transfer 126:149–154CrossRef Dorfman AS (2004) Transient heat transfer between a semi-infinite hot plate and a flowing cooling liquid film. ASME J Heat Transfer 126:149–154CrossRef
27.
go back to reference Dorfman AS (2009) Conjugate problems in convective heat transfer. Taylor & Francis. CRC Press Boca Raton, London, New YorkMATH Dorfman AS (2009) Conjugate problems in convective heat transfer. Taylor & Francis. CRC Press Boca Raton, London, New YorkMATH
28.
go back to reference Kiwan SM, Al-Nimr MA (2002) Analytical solution for conjugated heat transfer in pipes and ducts. Heat Mass Transfer 38:513–516CrossRef Kiwan SM, Al-Nimr MA (2002) Analytical solution for conjugated heat transfer in pipes and ducts. Heat Mass Transfer 38:513–516CrossRef
29.
go back to reference Soliman HM, Rahman MM (2006) Analytical solution of conjugate heat transfer and optimum configurations of flat-plate heat exchangers with circular flow channels. Heat Mass Transfer 42:596–607CrossRef Soliman HM, Rahman MM (2006) Analytical solution of conjugate heat transfer and optimum configurations of flat-plate heat exchangers with circular flow channels. Heat Mass Transfer 42:596–607CrossRef
30.
go back to reference Wang Q, Jaluria Y (2004) Three-dimensional conjugate heat transfer in a horizontal channel with discrete heating. ASME J Heat Transfer 126:642–647CrossRef Wang Q, Jaluria Y (2004) Three-dimensional conjugate heat transfer in a horizontal channel with discrete heating. ASME J Heat Transfer 126:642–647CrossRef
31.
go back to reference Weigand B, Lauffer D (2004) The extended Graetz problem with piecewise constant wall temperature for pipe and channel flows. Int J Heat Mass Transfer 47:5303–5312CrossRefMATH Weigand B, Lauffer D (2004) The extended Graetz problem with piecewise constant wall temperature for pipe and channel flows. Int J Heat Mass Transfer 47:5303–5312CrossRefMATH
32.
go back to reference Weigand B (2004) Analytical methods for heat transfer and fluid flow problems. Springer, Berlin, Heidelberg, New YorkCrossRefMATH Weigand B (2004) Analytical methods for heat transfer and fluid flow problems. Springer, Berlin, Heidelberg, New YorkCrossRefMATH
33.
go back to reference Labuntsov DA, Zudin YB (1977) Peculiarities of the process of heat transfer from a surface of a plate to a flow with a spatio-temporal periodic variation of the heat transfer coefficient. Part 1. General analysis. Works of Moscow Power Engineering Institute. Issue 347:84–92 (in Russian) Labuntsov DA, Zudin YB (1977) Peculiarities of the process of heat transfer from a surface of a plate to a flow with a spatio-temporal periodic variation of the heat transfer coefficient. Part 1. General analysis. Works of Moscow Power Engineering Institute. Issue 347:84–92 (in Russian)
34.
go back to reference Labuntsov DA, Zudin YB (1977) Peculiarities of the process of heat transfer from a surface of a plate to a flow with a spatio-temporal periodic variation of the heat transfer coefficient. Part 2. Solution of characteristic problems. Works of Moscow Power Engineering Institute. Issue 347:93–100 (in Russian) Labuntsov DA, Zudin YB (1977) Peculiarities of the process of heat transfer from a surface of a plate to a flow with a spatio-temporal periodic variation of the heat transfer coefficient. Part 2. Solution of characteristic problems. Works of Moscow Power Engineering Institute. Issue 347:93–100 (in Russian)
35.
go back to reference Zudin YB, Labuntsov DA (1978) Peculiarities of heat transfer at periodic asymmetrical regime. Works of Moscow Power Engineering Institute. Issue 377:35–39 (in Russian) Zudin YB, Labuntsov DA (1978) Peculiarities of heat transfer at periodic asymmetrical regime. Works of Moscow Power Engineering Institute. Issue 377:35–39 (in Russian)
36.
go back to reference Zudin YB (1980) Analysis of heat-transfer processes of periodic intensity. Dissertation. Moscow Power Engineering Institute (in Russian) Zudin YB (1980) Analysis of heat-transfer processes of periodic intensity. Dissertation. Moscow Power Engineering Institute (in Russian)
37.
go back to reference Labuntsov DA, Zudin YB (1984) Heat-transfer processes of periodic intensity. Energoatomizdat, Moscow (in Russian) Labuntsov DA, Zudin YB (1984) Heat-transfer processes of periodic intensity. Energoatomizdat, Moscow (in Russian)
38.
go back to reference Zudin YB (1991) Calculation of an empirical heat-transfer coefficient with a stepped periodic change in heat-transfer rate. High Temp 29:740–745 Zudin YB (1991) Calculation of an empirical heat-transfer coefficient with a stepped periodic change in heat-transfer rate. High Temp 29:740–745
39.
go back to reference Zudin YB (1991) A method of heat-exchange calculation in the presence of periodic intensity fluctuations. High Temp 29:921–928 Zudin YB (1991) A method of heat-exchange calculation in the presence of periodic intensity fluctuations. High Temp 29:921–928
40.
go back to reference Zudin YB (1992) Analog of the rayleigh equation for the problem of bubble dynamics in a tube. J Eng Phys Thermophys 63:672–675CrossRef Zudin YB (1992) Analog of the rayleigh equation for the problem of bubble dynamics in a tube. J Eng Phys Thermophys 63:672–675CrossRef
41.
go back to reference Zudin YB (1993) The calculation of parameters of the evaporating meniscus a thin liquid film. High Temp 31:714–716 Zudin YB (1993) The calculation of parameters of the evaporating meniscus a thin liquid film. High Temp 31:714–716
42.
go back to reference Zudin YB (1994) Calculation of effect for supplying heat to the wall on the averaged heat exchange coefficient. Thermophys Aeromech 1:117–119 Zudin YB (1994) Calculation of effect for supplying heat to the wall on the averaged heat exchange coefficient. Thermophys Aeromech 1:117–119
43.
go back to reference Zudin YB (1995) Averaged heat transfer during periodic fluctuations of the heat transfer intensity of the surface of a plate, a cylinder, or a sphere. J Eng Phys Thermophys 68:193–196MathSciNetCrossRef Zudin YB (1995) Averaged heat transfer during periodic fluctuations of the heat transfer intensity of the surface of a plate, a cylinder, or a sphere. J Eng Phys Thermophys 68:193–196MathSciNetCrossRef
44.
go back to reference Zudin YB (1995) Calculation of heat transfer characteristics with periodic pulsations of “cellular structure” intensity. Appl Energy: Russ J Fuel Power Heat Syst 33:151–159 Zudin YB (1995) Calculation of heat transfer characteristics with periodic pulsations of “cellular structure” intensity. Appl Energy: Russ J Fuel Power Heat Syst 33:151–159
45.
go back to reference Zudin YB (1995) Design of the wall heat effect on averaged convective heat transfer in processes of heat exchange with periodic intensity. Appl Energy: Russ J Fuel Power Heat Syst 33:76–81 Zudin YB (1995) Design of the wall heat effect on averaged convective heat transfer in processes of heat exchange with periodic intensity. Appl Energy: Russ J Fuel Power Heat Syst 33:76–81
46.
go back to reference Zudin YB (1995) Averaged heat exchange for double-sided periodicitity. Thermophys Aeromech 2:281–287 Zudin YB (1995) Averaged heat exchange for double-sided periodicitity. Thermophys Aeromech 2:281–287
47.
go back to reference Zudin YB (1996) On two types of pulsations of true heat transfer coefficient (a progressive wave and a cell). Thermophys Aeromech 3:341–346 Zudin YB (1996) On two types of pulsations of true heat transfer coefficient (a progressive wave and a cell). Thermophys Aeromech 3:341–346
48.
go back to reference Zudin YB (1996) Pulse law of true heat transfer coefficient pulsatinons. Appl Energy: Russ J Fuel Power Heat Syst 34:142–147MATH Zudin YB (1996) Pulse law of true heat transfer coefficient pulsatinons. Appl Energy: Russ J Fuel Power Heat Syst 34:142–147MATH
49.
go back to reference Zudin YB (1996) Theory on heat-transfer processes of periodic intensity. Habilitationsschrift, Moscow Power Engineering Institute (in Russian)MATH Zudin YB (1996) Theory on heat-transfer processes of periodic intensity. Habilitationsschrift, Moscow Power Engineering Institute (in Russian)MATH
50.
go back to reference Zudin YB (1997) Calculation of critical thermal loads under extreme intensities of mass forces. Heat Transfer Res 28:481–483CrossRef Zudin YB (1997) Calculation of critical thermal loads under extreme intensities of mass forces. Heat Transfer Res 28:481–483CrossRef
51.
go back to reference Zudin YB (1997) Influence of the coefficient of thermal activity of a wall on heat transfer in transient boiling. J Eng Phys Thermophys 71:696–698CrossRef Zudin YB (1997) Influence of the coefficient of thermal activity of a wall on heat transfer in transient boiling. J Eng Phys Thermophys 71:696–698CrossRef
52.
go back to reference Zudin YB (1997) Law of vapor-bubble growth in a tube in the region of low pressures. J Eng Phys Thermophys 70:714–717CrossRef Zudin YB (1997) Law of vapor-bubble growth in a tube in the region of low pressures. J Eng Phys Thermophys 70:714–717CrossRef
53.
go back to reference Zudin YB (1997) The use of the model of evaporating macrolayer for determining the characteristics of nucleate boiling. High Temp 35:565–571 Zudin YB (1997) The use of the model of evaporating macrolayer for determining the characteristics of nucleate boiling. High Temp 35:565–571
54.
go back to reference Zudin YB (1998) Calculation of the surface density of nucleation sites in nucleate boiling of a liquid. J Eng Phys Thermophys 71:178–183CrossRef Zudin YB (1998) Calculation of the surface density of nucleation sites in nucleate boiling of a liquid. J Eng Phys Thermophys 71:178–183CrossRef
55.
go back to reference Zudin YB (1998) Boiling of liquid in the cell of a jet printer. J Eng Phys Thermophys 71:217–220CrossRef Zudin YB (1998) Boiling of liquid in the cell of a jet printer. J Eng Phys Thermophys 71:217–220CrossRef
56.
go back to reference Zudin YB (1998) Effect of the thermophysical properties of the wall on the heat transfer coefficient. Therm Eng 45(3):206–209 Zudin YB (1998) Effect of the thermophysical properties of the wall on the heat transfer coefficient. Therm Eng 45(3):206–209
57.
go back to reference Zudin YB (1998) The distance between nucleate boiling sites. High Temp 36:662–663 Zudin YB (1998) The distance between nucleate boiling sites. High Temp 36:662–663
58.
go back to reference Zudin YB (1998) Temperature waves on a wall surface. Russ Dokl Phys: J Acad Sci 43(5):313–314 Zudin YB (1998) Temperature waves on a wall surface. Russ Dokl Phys: J Acad Sci 43(5):313–314
59.
go back to reference Zudin YB (1999) Burn-out of a liquid under conditions of natural convection. J Eng Phys Thermophys 72:50–53CrossRef Zudin YB (1999) Burn-out of a liquid under conditions of natural convection. J Eng Phys Thermophys 72:50–53CrossRef
60.
go back to reference Zudin YB (1999) Wall non-isothermicity effect on the heat exchange in jet reflux. J Eng Phys Thermophys 72:309–312CrossRef Zudin YB (1999) Wall non-isothermicity effect on the heat exchange in jet reflux. J Eng Phys Thermophys 72:309–312CrossRef
61.
go back to reference Zudin YB (1999) Model of heat Transfer in bubble boiling. J Eng Phys Thermophys 72:438–444CrossRef Zudin YB (1999) Model of heat Transfer in bubble boiling. J Eng Phys Thermophys 72:438–444CrossRef
62.
go back to reference Zudin YB (1999) Self-oscillating process of heat exchange with periodic intensity. J Eng Phys Thermophys 72:635–641CrossRef Zudin YB (1999) Self-oscillating process of heat exchange with periodic intensity. J Eng Phys Thermophys 72:635–641CrossRef
63.
go back to reference Zudin YB (1999) The effect of the method for supplying heat to the wall on the averaged heat-transfer coefficient in periodic rate heat-transfer prozesses. Therm Eng 46(3):239–243 Zudin YB (1999) The effect of the method for supplying heat to the wall on the averaged heat-transfer coefficient in periodic rate heat-transfer prozesses. Therm Eng 46(3):239–243
64.
go back to reference Zudin YB (1999) Harmonic law of fluctuations of the true heat transfer coefficient. Thermophys Aeromech 6:79–88 Zudin YB (1999) Harmonic law of fluctuations of the true heat transfer coefficient. Thermophys Aeromech 6:79–88
65.
go back to reference Zudin YB (1999) Some properties of the solution of the heat-conduction equation with periodic boundary condition of third kind. Thermophys Aeromech 6:391–398 Zudin YB (1999) Some properties of the solution of the heat-conduction equation with periodic boundary condition of third kind. Thermophys Aeromech 6:391–398
66.
go back to reference Zudin YB (2000) Processes of heat exchange with periodic intensity. Therm Eng 47(6):124–128 Zudin YB (2000) Processes of heat exchange with periodic intensity. Therm Eng 47(6):124–128
67.
go back to reference Zudin YB (2000) Analysis of the processes of heat transfer with periodic intensity with allowance for temperature fluctuations in the heat carrier. J Eng Phys Thermophys 73:243–247CrossRef Zudin YB (2000) Analysis of the processes of heat transfer with periodic intensity with allowance for temperature fluctuations in the heat carrier. J Eng Phys Thermophys 73:243–247CrossRef
68.
go back to reference Zudin YB (2000) Averaging of the heat-transfer coefficient in the processes of heat exchange with periodic intensity. J Eng Phys Thermophys 73:643–647CrossRef Zudin YB (2000) Averaging of the heat-transfer coefficient in the processes of heat exchange with periodic intensity. J Eng Phys Thermophys 73:643–647CrossRef
Metadata
Title
Introduction
Author
Yuri B. Zudin
Copyright Year
2017
Publisher
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-53445-8_1

Premium Partners