Produktbild: Janna, W: Design of Fluid Thermal Systems, SI Edition

Janna, W: Design of Fluid Thermal Systems, SI Edition

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

25.04.2014

Verlag

Cengage Learning

Seitenzahl

768

Maße (L/B/H)

22.9/18.9/2.7 cm

Gewicht

955 g

Auflage

4. Auflage

Sprache

Englisch

ISBN

978-1-305-07607-5

Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

25.04.2014

Verlag

Cengage Learning

Seitenzahl

768

Maße (L/B/H)

22.9/18.9/2.7 cm

Gewicht

955 g

Auflage

4. Auflage

Sprache

Englisch

ISBN

978-1-305-07607-5

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  • Produktbild: Janna, W: Design of Fluid Thermal Systems, SI Edition
  • 1. INTRODUCTION. The Design Process. The Bid Process. Approaches to Engineering Design. Design Project Example. Project Management. Dimensions and Units. Summary. Questions for Discussion. Show and Tell. Problems. 2. FLUID PROPERTIES AND BASIC EQUATIONS. Fluid Properties. Measurement of Viscosity. Measurement of Pressure. Basic Equations of Fluid Mechanics. Summary. Show and Tell. Problems. 3. PIPING SYSTEMS I. Pipe and Tubing Standards. Equivalent Diameter for noncircular Ducts. Equation of Motion for Flow in a Duct. Friction Factor and Pipe Roughness. Minor Losses. Series Piping Systems. Flow Through Noncircular Cross Sections. Show and Tell. Problems. 4. PIPING SYSTEMS II. The Optimization Process. Economic Pipe Diameter. Equivalent Length of Fittings. Graphical Symbols for Piping Systems. System Behavior. Measurement of Flow Rate in Closed Conduits. Support Systems for Pipes. Summary. Show and Tell. Problems. 5. SELECTED TOPICS IN FLUID MECHANICS. Flow in Pipe Networks. Pipes in Parallel. Measurement of Flow Rate in Closed Conduits. The Unsteady Draining Tank Problem. Summary. Show and Tell. Problems. 6. PUMPS AND PIPING SYSTEMS. Types of Pumps. Pump Testing Methods. Cavitation and Net Positive Suction Head. Dimensional Analysis of Pumps. Specific Speed and Pump Types. Piping System Design Practices. Fans and Fan Performance. Summary. Show and Tell. Problems. Group Problems. 7. SOME HEAT TRANSFER FUNDAMENTALS. Conduction of Heat Through a Plane Wall. Conduction of Heat Through a Cylindrical Wall. Convection Heat Transfer—The General Problem. Convection Heat Transfer Problem: Formulation and Solution. Optimum Thickness of Insulation. Summary. Problems. 8. DOUBLE-PIPE HEAT EXCHANGERS. The Double-Pipe Heat Exchanger. Analysis of Double-Pipe Heat Exchangers. Effectiveness-NTU Analysis. Double-Pipe Heat Exchanger Design Considerations. Summary. Show and Tell. Problems. 9. SHELL-AND-TUBE HEAT EXCHANGERS. The Shell-and-Tube Heat Exchangers. Analysis of Shell-and-Tube Exchangers. Effectiveness-NTU Analysis. Increased Heat Recovery in Shell-and-Tube Heat Exchangers. Shell-and-Tube Heat Exchanger Design Considerations. Optimum Water Outlet Temperature Analysis. Show and Tell. Problems. 10. PLATE-AND-FRAME HEAT EXCHANGERS AND CROSS-FLOW HEAT EXCHANGERS. The Plate-and-Frame Heat Exchanger. Analysis of Plate-and-Frame Heat Exchangers. Cross-Flow Heat Exchangers. Summary. Show and Tell. Problems. 11. PROJECT DESCRIPTIONS.