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Pump Design and Heat Exchange Design
8 students

Pump Design and Heat Exchange Design

This Course is for Chemical and Mechanical Engineer (Beginner Level)
Created byA R Singh
Last updated 5/2025
English

What you'll learn

  • Types of Pump, Pump Capacity
  • Pumping System & Atmospheric Pressure
  • The Relationship of Pressure and Head, Pump Performance Curve
  • NPSH Calculation, Cavitation
  • Piping Fundamentals, Pump Curve, Terms & Definitions - NPSH & Cavitation
  • Heat Exchanger Design, Primary Process Function of Heat Exchanger
  • Codes & Standards and Aim of Heat Exchanger
  • Why Shell and Tube Heat Exchanger
  • TEMA class of heat exchanger, TEMA Terminology

Course content

2 sections25 lectures1h 14m total length
  • Introduction & Course Content1:48
  • Types of Pumps1:19
  • Basic Information to Select Pump1:25
  • Capacity of Pump and What is Pressure1:46
  • Brake KW Calculation0:52
  • Pumping System & Atmospheric Pressure3:45
  • The Relationship of Pressure and Head1:59
  • Pump Performance Curve3:00
  • NPSHa Calculation7:04
  • Cavitation3:21
  • Pump Curve1:37
  • Terms & Definitions - NPSH & Cavitation1:25
  • Important Calculation4:22
  • Piping Fundamentals6:05
  • Preferred Operating Range1:23
  • Pump System Curve3:11
  • Uncertainty & Safety Factors2:02

Requirements

  • Basic knowledge of chemical / mechanical engineering

Description

Pump & Heat Exchanger Design for Beginners

This course is designed for aspiring process engineers and mechanical engineer who want to learn the basics of pump and heat exchanger design in a simple and practical way.

1. Understanding Pumps

  • What are pumps and why are they important?

  • Different types of pumps and their uses

  • How to choose the right pump for a process

  • Common issues with pumps and how to fix them

2. Pump Design Basics

  • Key parts of a pump and how they work

  • How to calculate pump efficiency and power requirements

  • Steps to design a pump system

3. Understanding Heat Exchangers

  • What is a heat exchanger and why is it needed?

  • Types of heat exchangers used in industries

  • How heat exchangers transfer heat

4. Heat Exchanger Design Basics

  • Choosing the right heat exchanger for a process

  • Important calculations for heat transfer

  • Improving efficiency and performance of heat exchangers

5. Industries Using Pumps & Heat Exchangers

These equipment are widely used in industries such as:

  • Oil & Gas: For fluid transportation, refining, and cooling systems.

  • Chemical Processing: Used for safe transfer and temperature control of chemicals.

  • Power Plants: Vital for cooling systems and steam generation.

  • Food & Beverage: Helps with heating, cooling, and hygienic processing.

  • Pharmaceuticals: Used in drug manufacturing and temperature-sensitive processes.

  • Water Treatment: Essential for wastewater management and clean water supply.

Throughout the course, you’ll learn real-world examples and practical tips to help you design pumps and heat exchangers with confidence.

Enroll now and start your journey in process equipment design!

Who this course is for:

  • Mechanical Engineer
  • Chemical Engineer