# A heat transfer textbook by Lienhard J.H.IV, Lienhard J.H.V.

By Lienhard J.H.IV, Lienhard J.H.V.

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Wilkinson. Mass Transfer in Solids and Fluids. Cambridge University Press, Cambridge, 2000. A systematic development of mass transfer with a materials science focus and an emphasis on modelling. 27] D. R. Poirier and G. H. Geiger. Transport Phenomena in Materials Processing. The Minerals, Metals & Materials Society, Warrendale, Pennsylvania, 1994. A comprehensive introduction to heat, mass, and momentum transfer from a materials science perspective. 28] W. M. Rohsenow, J. P. Hartnett, and Y. I.

24 will give a positive ∆S whether Tb > T∞ or Tb < T∞ because the sign of dTb will always opposed the sign of the integrand. 4 A thermocouple bead is largely solder, 1 mm in diameter. It is initially at room temperature and is suddenly placed in a 200◦ C gas ﬂow. 18 kJ/kg·K, respectively. Evaluate the response of the thermocouple. 3 Solution. 116 s = ρcV = Therefore, eqn. 116 ◦ C (20 − 200)◦ C This result is plotted in Fig. 12, where we see that, for all practical purposes, this thermocouple catches up with the gas stream in less than 5 s.

Coverage is mainly of boundary layers and internal ﬂows. M. White. Viscous Fluid Flow. , New York, 2nd edition, 1991. Excellent development of fundamental results for boundary layers and internal ﬂows. A. Schetz. Foundations of Boundary Layer Theory for Momentum, Heat, and Mass Transfer. , Englewood Cliﬀs, NJ, 1984. This book shows many experimental results in support of the theory. 13] A. Bejan. Convection Heat Transfer. John Wiley & Sons, New York, 2nd edition, 1995. This book makes good use of scaling arguments.