Design of Fluid Thermal Systems 4th Edition Janna Solutions Manual

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Design of Fluid Thermal Systems 4th Edition Janna Solutions Manual.

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Product Details:

  • ISBN-10 ‏ : ‎ 1285859650
  • ISBN-13 ‏ : ‎ 978-1285859651
  • Author:  William S. Janna

This book is designed to serve senior-level engineering students taking a capstone design course in fluid and thermal systems design. It is built from the ground up with the needs and interests of practicing engineers in mind; the emphasis is on practical applications. The book begins with a discussion of design methodology, including the process of bidding to obtain a project, and project management techniques. The text continues with an introductory overview of fluid thermal systems (a pump and pumping system, a household air conditioner, a baseboard heater, a water slide, and a vacuum cleaner are among the examples given), and a review of the properties of fluids and the equations of fluid mechanics. The text then offers an in-depth discussion of piping systems, including the economics of pipe size selection. Janna examines pumps (including net positive suction head considerations) and piping systems. He provides the reader with the ability to design an entire system for moving fluids that is efficient and cost-effective. Next, the book provides a review of basic heat transfer principles, and the analysis of heat exchangers, including double pipe, shell and tube, plate and frame cross flow heat exchangers. Design considerations for these exchangers are also discussed. The text concludes with a chapter of term projects that may be undertaken by teams of students.

 

Table of Content:

  1. Chapter 1: Introduction
  2. 1.1 The Design Process
  3. 1.2 The Bid Process
  4. 1.3 Approaches to Engineering Design
  5. 1.4 Design Project Example
  6. 1.5 Project Management
  7. 1.6 Dimensions and Units
  8. 1.7 Summary
  9. 1.8 Questions for Discussion
  10. 1.9 Show and Tell
  11. 1.10 Problems
  12. Chapter 2: Fluid Properties and Basic Equations
  13. 2.1 Fluid Properties
  14. 2.2 Measurement of Viscosity
  15. 2.3 Measurement of Pressure
  16. 2.4 Basic Equations of Fluid Mechanics
  17. 2.5 Summary
  18. 2.6 Show and Tell
  19. 2.7 Problems
  20. Chapter 3: Piping Systems I
  21. 3.1 Pipe and Tubing Standards
  22. 3.2 Equivalent Diameters for Noncircular Ducts
  23. 3.3 Equation of Motion for Flow in a Duct
  24. 3.4 Friction Factor and Pipe Roughness
  25. 3.5 Minor Losses
  26. 3.6 Series Piping Systems
  27. 3.7 Flow through Noncircular Cross Sections
  28. 3.8 Summary
  29. 3.9 Show and Tell
  30. 3.10 Problems
  31. Chapter 4: Piping Systems II
  32. 4.1 The Optimization Process
  33. 4.2 Economic Pipe Diameter
  34. 4.3 Equivalent Length of Fittings
  35. 4.4 Graphical Symbols for Piping Systems
  36. 4.5 System Behavior
  37. 4.6 Support Systems for Pipes
  38. 4.7 Summary
  39. 4.8 Show and Tell
  40. 4.9 Problems
  41. Chapter 5: Selected Topics in Fluid Mechanics
  42. 5.1 Flow in Pipe Networks
  43. 5.2 Pipes in Parallel
  44. 5.3 Measurement of Flow Rate in Closed Conduits
  45. 5.4 The Unsteady Draining Tank Problem
  46. 5.5 Summary
  47. 5.6 Show and Tell
  48. 5.7 Problems
  49. Chapter 6: Pumps and Piping Systems
  50. 6.1 Types of Pumps
  51. 6.2 Pump Testing Methods
  52. 6.3 Cavitation and Net Positive Suction Head
  53. 6.4 Dimensional Analysis of Pumps
  54. 6.5 Specific Speed and Pump Types
  55. 6.6 Piping System Design Practices
  56. 6.7 Fans and Fan Performance
  57. 6.8 Summary
  58. 6.9 Show and Tell
  59. 6.10 Problems
  60. Chapter 7: Some Heat Transfer Fundamentals
  61. 7.1 Conduction of Heat through a Plane Wall
  62. 7.2 Conduction of Heat through a Cylindrical Wall
  63. 7.3 Convection Heat Transfer – The General Problem
  64. 7.4 Convection Heat Transfer Problems: Formulation and Solution
  65. 7.5 Optimum Thickness of Insulation
  66. 7.6 Summary
  67. 7.7 Problems
  68. Chapter 8: Double Pipe Heat Exchangers
  69. 8.1 The Double Pipe Heat Exchanger
  70. 8.2 Analysis of Double Pipe Heat Exchangers
  71. 8.3 Effectiveness-NTU Analysis
  72. 8.4 Double Pipe Heat Exchanger Design Considerations
  73. 8.5 Summary
  74. 8.6 Show and Tell
  75. 8.7 Problems
  76. Chapter 9: Shell and Tube Heat Exchangers
  77. 9.1 The Shell and Tube Heat Exchanger
  78. 9.2 Analysis of Shell and Tube Heat Exchangers
  79. 9.3 Effectiveness-NTU Analysis
  80. 9.4 Increased Heat Recovery in Shell and Tube Heat Exchangers
  81. 9.5 Shell and Tube Heat Exchanger Design Considerations
  82. 9.6 Optimum Water Outlet Temperature Analysis
  83. 9.7 Show and Tell
  84. 9.8 Problems
  85. Chapter 10: Plate and Frame and Cross Flow Heat Exchangers
  86. 10.1 The Plate and Frame Heat Exchanger
  87. 10.2 Analysis of Plate and Frame Heat Exchangers
  88. 10.3 Cross-Flow Heat Exchangers
  89. 10.4 Summary
  90. 10.5 Show and Tell
  91. 10.6 Problems
  92. Chapter 11: Project Descriptions
  93. Appendix: Tables
  94. Bibliography

 

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