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Titlebook: Heat and Mass Transfer; Rajendra Karwa Textbook 20171st edition Springer Science+Business Media Singapore 2017 Heat transfer.Heat and mass

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Unsteady or Transient Heat Conduction,me as well as in the space. For bodies with a very high thermal conductivity combined with a low value of the convective heat transfer coefficient, lumped heat capacity analysis has been presented. For determination of temperature variation with time and spatial position in plates (whose thickness i
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Convective Heat Transfer,w, have been presented in this chapter. Solution of momentum equation for laminar flow over a flat plate by Blausius and solution of the integral momentum equation of laminar flow by von Karman are presented for friction factor determination. Pohlhausen’s solution of energy equation and von Karman i
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Empirical Relations for Forced Convection Heat Transfer,ere are a large number of convection problems, especially the convection with turbulent flow, for which the analytical solutions have not met the success. Hence, the technique of dimensional analysis has been applied to develop functional relations in terms of dimensionless numbers. Empirical relati
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Exchange of Thermal Radiation Between Surfaces Separated by Transparent Medium, radiation exchange between gray bodies also depends on their emissivity. For calculation of the radiation exchange between two black surfaces, basic integral equation of the shape factor has been derived which represents the fraction of the total radiation emitted by a surface intercepted by other
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Heat Transfer in Absorbing and Emitting Media (Gaseous Radiation),rough transparent medium. The specific features of the gaseous radiation have been discussed in this chapter. The procedure for the calculation of net heat exchange, presented by Hottel, between a black enclosure and isothermal (uniform temperature) gas volume consisting of CO. and/or water vapour i
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Heat Exchangers,at exchanger fundamentals and design of heat exchangers. Heat transfer equation for double pipe heat exchanger has been presented and log mean temperature difference (LMTD) has been defined in Part 1 of the chapter followed by derivations of equations of LMTD for parallel flow and counterflow exchan
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