Heat Exchanger Design Handbook 1998. 1. Heat exchanger theory. 2. Fluid mechanics and heat transfer.
Author(s) : HEWITT G. F., et al.
Type of monograph: Book, Guide/Handbook
Summary
Extract from the table of contents of volume 1: Part 1. Heat exchanger theory: description of heat exchanger types; definitions and quantitative relationships for heat exchangers; analytic solutions to heat exchanger equations; numerical solution procedures for heat exchanger equations; charts for mean temperature difference in industrial heat exchanger configurations; effectiveness of multipass shell-and-tube heat exchangers with segmental baffles (cell method); pinch analysis for network design; entropy generation minimization in heat transfer. Part 2. Fluid mechanics and heat transfer: fundamentals of heat and mass transfer; single-phase fluid flow; multiphase fluid flow and pressure drop; heat conduction; single-phase convective heat transfer; condensation; boiling and evaporation; heat transfer to gas-solid systems; heat transfer by radiation; direct contact heat transfer.
Details
- Original title: Heat Exchanger Design Handbook 1998. 1. Heat exchanger theory. 2. Fluid mechanics and heat transfer.
- Record ID : 1999-0631
- Languages: English
- Subject: General information
- Publication: Begell House - United states/United states
- Publication date: 1998
- ISBN: 1567000940
- Source: Source: vol. 1; 1324 p. (22 x 28); fig.; tabl.; index; USD 119.00.
- Document available for consultation in the library of the IIR headquarters only.
Indexing
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Themes:
Thermodynamics, transfer processes: general information;
Evaporators, condensers and other heat exchangers;
Heat transfer;
Mass transfer;
Two-phase flow;
Refrigerant circulation: piping, control, automation, safety - Keywords: Two-phase flow; Thermodynamics; Thermal conductivity; Radiation; Industrial application; Heat transfer coefficient; Generality; Gas; Fluid; Finned tube; Calculation; Mass transfer; Heat transfer; Diagram; Design; Network; Solid; Duct; Fluidization; Evaporation; Equation of state; Entropy; Crossflow; Shell and tube exchanger; Convection; Condensation; Change of phase; Heat exchanger; Boiling; Pressure drop
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