Heat Exchanger Design and Performance

  • Mechanical Engineering |

Description

This course provides advanced knowledge in heat exchanger design and analysis. Moreoverrnthe course provides detailed information of selection procedures, direct-sizing of different heatrnexchanger types, exergy loss and pressure loss, heat transfer flow friction in two-phase flow andrnheat exchangers in cryogenic plant.

Program

Doctor of Philosophy (PhD) in Mechanical Engineering

Objectives

  • Presenting advanced knowledge in heat exchanger design.rnProvides knowledge of heat exchanger performance analysis.rnUnderstanding the heat exchanger different sizing methods.rnIntroduces details of heat transfer and flow friction in two-phase flow.rn

Textbook

Data will be available soon!

Course Content

content serial Description
1Introduction
2Classification and Fundamentals of Heat exchangers
3The Log Mean Temperature Difference Method LMTD
4The Effectiveness–NTU Method
5Selection of Heat Exchangers
6Direct-Sizing of Plate-Fin Exchangers
7Direct-Sizing of Helical-Tube Exchangers
8Direct-Sizing of Bayonet-Tube Exchangers
9Direct-Sizing of ROD-baffle Exchangers
10Exergy Loss and Pressure Loss
11Transients in Heat Exchangers
12Single-Blow Test Methods
13Multi-Stream Heat Exchangers
14Heat Transfer and Flow Friction in Two-Phase Flow
15Heat Transfer and Flow Friction in Two-Phase Flow (Contd.)
16Final Examination

Markets and Career

  • Generation, transmission, distribution and utilization of electrical power for public and private sectors to secure both continuous and emergency demands.
  • Electrical power feeding for civil and military marine and aviation utilities.
  • Electrical works in construction engineering.

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