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  1. Learn how to use fundamental heat transfer to understand and model real devices like heat exchangers. See examples of double-pipe, shell-and-tube, and plate-fin heat exchangers, and how to calculate their overall heat transfer coefficients.

  2. A comprehensive textbook on heat exchanger design, classification, and analysis. Covers thermal, hydraulic, mechanical, and manufacturing aspects of heat exchangers, as well as design methodology and examples.

  3. Mar 23, 2016 · Learn how to design heat exchangers for different applications using various methods such as LMTD, ε − NTU, Ψ − P and Λ − π. This chapter covers the governing equations, overall heat transfer coefficient, and fouling resistance for recuperators and regenerators.

  4. The general principles of the mechanical design of the following types of exchangers are given in the Heat Exchanger Design Handbook (1994), and full descriptions of each, are given under the corresponding entries in this encyclopedia: Shell and Tube Exchangers. Air Cooled Exchangers. Plate Type Exchangers. Plate Fin Type Exchangers.

  5. A comprehensive textbook on heat exchanger design, modeling, analysis, and optimization. Covers various types of heat exchangers, thermodynamic principles, irreversibilities, and design methods.

  6. Learn how to design a shell and tube heat exchanger from start to finish with this step-by-step guide. Find useful charts, correlations, and formulas for heat transfer, energy balances, and unit operations.

  7. May 16, 2013 · A comprehensive reference on heat exchanger design, modes of operation, and applications in various industries. Covers thermohydraulic fundamentals, thermal design, compact heat exchangers, shell and tube heat exchangers, regenerators, plate heat exchangers, fouling, vibration, corrosion, materials selection, fabrication, quality control, and more.

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