As one of the most popular heat transfer texts, Jack Holman's HEAT TRANSFER is noted for its clarity, accessible approach, and inclusion of many examples and problem sets. The new Ninth Edition retains the straight-forward, to-the-point writing style while covering both analytical and empirical approaches to the subject. Throughout the book, emphasis is placed on physical understanding while, at the same time, relying on meaningful experimental data in those situations that do not permit a simple analytical solution. New examples and templates provide students with updated resources for computer-numerical solutions.
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aluminum analysis Assume average boundary conditions boundary layer Btu/h bulk temperature Calculate the heat Calculate the heat-transfer Calculate the temperature condensation constant heat ﬂux constant temperature convection boundary convection coefﬁcient convection environment convection heat transfer convection heat-transfer coefﬁcient cooling correlation cylinder deﬁned diffusion emissivity evaluated expressed Figure Example ﬁlm ﬁn ﬁrst ﬂat plate flow ﬂow rate ﬂuid free convection free-stream Grashof heat conducted heat exchanger heat ﬂow heat lost heat-transfer coefficient heat-transfer rate horizontal increments inﬁnite inﬂuence inside insulated isothermal kg/s laminar liquid Mass Transfer nodal equations node Nusselt obtain one-dimensional overall heat-transfer coefﬁcient pipe Prandtl number pressure properties radiosity reﬂection relation Reynolds number semi-infinite shape factor shown in Figure solution sphere steady-state suddenly exposed surface temperature Table temperature difference temperature distribution thermal conductivity thermal resistance thickness tube bank turbulent ﬂow unit length water ﬂow