Process Heat Transfer: Principles and Applications

List of Figures

Chapter 1: Heat Conduction

Figure 1.1: One-dimensional heat conduction in a solid
Figure 1.2: Differential volume element used in derivation of conduction equation
Figure 1.3: Heat transfer through a composite material
Figure 1.4: Semi-infinite solid
Figure 1.5: Infinite solid of finite thickness
Figure 1.6: Average temperatures during unsteady-state heating or cooling of a rectangular solid, an infinitely long cylinder, and a sphere

Chapter 2: Convective Heat Transfer

Figure 2.1: Transient heat transfer between a solid and a fluid
Figure 2.2: Rectangular fin attached to a flat surface
Figure 2.3: Annular fin attached to a tube wall
Figure 2.4: Heat transfer in pipe flow
Figure 2.5: Forced convection in flow over a flat plate
Figure 2.6: Free convection circulation pattern near a heated vertical plate

Chapter 3: Heat Exchangers

Figure 3.1: Simple double-pipe exchanger (Source: Ref. [4])
Figure 3.2: Multi-tube hairpin exchanger (Source: Koch Heat Transfer Company, LP)
Figure 3.3: Schematic illustration of a shell-and-tube heat exchanger with one shell pass and two tube passes
Figure 3.4: TEMA designations for shell-and-tube exchangers (Source: Ref. [5])
Figure 3.5: (a) Type AES floating-head exchanger; (b) type BEM fixed-tube sheet exchanger with conical rear head (Source: Ref. [5])
Figure 3.5: (a) Type AES floating-head exchanger; (b) type BEM fixed-tube sheet exchanger with conical rear head (Source: Ref. [5])
Figure 3.5: (c) Type AEP floating-head exchanger; (d) type CFU U-tube exchanger with two-pass shell (Source: Ref. [5])
Figure 3.6: Commonly used tube layouts. (a) Square pitch (90 ); (b) rotated square pitch (45 ); and (c) triangular...

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