Energy Saving in Heat Exchanger

Energy Saving in Heat Exchanger

Heat exchanger is most commonly used engineering application and have a huge potential for optimization. This 1.5 hr course on heat exchanger talks about different configurations and applicability of heat exchangers. Performance evaluation fundamentals are very important and they are explained at depth with examples. Fouling is most disturbing phenomena in any heat exchanger and prevention methods of that are explained. Course ends with selection and energy saving methods of heat exchangers. Course is useful to the consultants, engineers and auditors working in Industry. 

Instructors: Dr. Sonal Desai

$16.93

Why this course?

Description

Benefits of the course

1. Introduction to Heat Exchanger

2. Shell & Tube Heat Exchanger and their different configurations

3. Plate type Heat Exchanger

4. Parallel flow & Counter flow Heat Exchanger

5. Cross flow Heat Exchanger

6. Heat Exchanger Applications

7. Performance of Heat Exchanger

8. Log Mean Temperature Difference (LMTD) Method to evaluate heat exchanger performance

9. Numerical

10. LMTD Correction Factor Charts

11. Numerical

12. Limitation Log Mean Temperature Difference

13. Effectiveness - NTU Method to evaluate heat exchanger performance

14. Numerical

15. Fouling in Heat Exchanger

16. Types of Fouling in Heat Exchanger

17. Prevention & Removal of Fouling in heat exchanger

18. Tubular Exchanger Manufacturers Association Standards (TEMA)

19. Selection of a Heat Exchanger

20. Methods to Improve Efficiency of Heat Exchanger

Heat Exchanger Tube Inserts

Use of Fins

Use of Deformed Tubes

Use of Baffles

21. Leak Detection Methods for heat exchangers

 

Course Curriculum

Course Introduction
Lecture 1 Introduction to Heat Exchanger
Lecture 2 Types of Heat Exchanger
Lecture 3 Performance of Heat Exchanger(LMTD)
Lecture 4 Performance of Heat Exchanger(Effectiveness-NTU method)
Lecture 5 Performance of Heat Exchanger(Example)
Lecture 6 Selection & Methods to Improve the Efficiency in Heat Exchanger
Reference Material_Example (20 pages)

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