Heat Exchanger Design Guide

- A Practical Guide for Planning, Selecting and Designing of Shell and Tube Exchangers

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Heat Exchanger Design Guide: A Practical Guide for Planning, Selecting and Designing of Shell and Tube Exchangers takes users on a step-by-step guide to the design of heat exchangers in daily practice, showing how to determine the effective driving temperature difference for heat transfer. Users will learn how to calculate heat transfer coefficients for convective heat transfer, condensing, and evaporating using simple equations. Dew and bubble points and lines are covered, with all calculations supported with examples. This practical guide is designed to help engineers solve typical problems they might encounter in their day-to-day work, and will also serve as a useful reference for students learning about the field. The book is extensively illustrated with figures in support of the text and includes calculation examples to ensure users are fully equipped to select, design, and operate heat exchangers.

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  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,4 cm

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    Reynolds number Fouling Dew point Heat transfer coefficient Flow Boiling Application examples Baffles PLES Advantages of finned tubes Allowable bubble rising velocity Baffle Spacing Boiling point increase Boiling point Bypass stream Baffle types Bypass streams Cross-flow velocity shell side Condensation curves Condenser construction types Circulating rate Differential condenser Dimensioning kettle reboilers Calculation of overall heat transfer coefficients Downcomer Colburn factor Condensate drain pipe Dew point and bubble point line Different calculation models Double pipe heat exchanger Design of falling film evaporator Fin efficiency Fouling factors Exchanger tables Expansion compensation Condenser types Cross flow heat exchanger Heat flux density Heat duties Heat load curve Heat transfer resistances Helical coil heat exchanger Heat transfer coefficient tube side Heat transfer coefficient shell side Design schema Integral condenser Effectiveness of finned tubes Effects of elevation height H1 Flood in reflux condensers Flash calculations Flash evaporation Flow velocity in reboiler Gra�hof number Number of required baffles Heat transfer coefficient for isothermal condensation Heat transfer coefficient in falling film evaporators Parameters influencing heat transfer coefficient Pressure loss in thermosiphon circulation Pool Boiling Required heating length Required evaporation length Inert gas in the vapor Shell-side flow velocity Shell-side pressure drop Kern factor Shell-side cross section area Heat conduction through the tube wall Heat transfer coefficient in nucleate boiling (kettle reboiler)Maximum heat flux density Tube-side flow cross section area Maximum condensate load in horizontal tubes Maximum vapor flow capacity Viscosity correction Temperature efficiency factor (F)Temperature gradient Tube pattern Nusselt Number Overall heat transfer coefficient Multicomponent mixtures Multipipe heat exchanger Prandtl number Stanton number Tube-side flow velocity Riser Vapor�liquid equilibrium Sealing strips Selection schema for TEMA type Top condensers Reboiler curves Required height H1 for thermosiphon circulation Tube-side pressure drop Two-phase density TEMA standard Wallis factor

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