Advances in Thermal Design of Heat Exchangers

Advances in Thermal Design of Heat Exchangers

Advances in Thermal Design of Heat Exchangers: A Numerical Approach: Direct-sizing, Step-wise rating, and Transients 1st Edition is set at research graduate and professional level in clean technologies, and is designed as a reference text. Theory explained simply, so that the reader can develop his/her own approach to solution of problems. The text is not intended as a collection of heat-transfer and pressure-loss correlations, although a fair amount of such material has been included.

The primary objective in any engineering design process has to be the elimination of uncertainties. In thermal design of heat exchangers there are presently many stages in which assumptions in mathematical solution of the design problem are being made. Accumulation of these assumptions (e.g. use of mean values) may introduce variations in design as large as the uncertainties introduced in heat-transfer and flowfriction correlations. The designer needs to understand where these inaccuracies may arise, and strive to eliminate as many sources of error as possible by choosing design configurations that avoid such problems at source.

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Advances in Thermal Design of Heat Exchangers Content

  • PrefaceAdvances in Thermal Design of Heat Exchangers
  • Classification
  • Fundamentals
  • Steady-State Temperature Profiles
  • Direct-Sizing of Plate-Fin Exchangers
  • Direct-Sizing of Helical-Tube Exchangers
  • The Direct-Sizing of Bayonet-Tube Exchangers
  • Direct-Sizing of RODbaffle Exchangers
  • Energy Loss and Pressure Loss
  • Pressure loss
  • Transients in Heat Exchangers
  • Single-Blow Test Methods
  • Heat Exchangers in Cryogenic Plant
  • Heat Transfer and Flow Friction in Two-Phase Flow
  • A:Transient Equations with Longitudinal Conduction and Wall Thermal Storage
  • B: Algorithms And Schematic Source Listings
  • C: Optimization of Rectangular Offset Strip, Plate-Fin Surfaces
  • D: Performance Data for RODbaffle Exchangers
  • F: Most Efficient Temperature Difference in Contraflow
  • G: Physical Properties of Materials and Fluids
  • H: Source Books on Heat Exchangers
  • I: Creep Life of Thick Tubes
  • J: Compact Surface Selection for Sizing Optimization
  • K: Continuum Equations
  • L: Suggested Further Research
  • M: Conversion Factors
  • Index

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