CONSTRUCTION OF HEAT EXCHANGER FABRICATION OF A TUBE AND SHELL HEAT EXCHANGER SYSTEM
Download Full Final Year Project Topic and Materials for FREE. This Project Material contains 65 pages and contains Chapters 1-5
Keywords: Project Topic, Final Year Project Topic, Download Free Project Topic Material, CONSTRUCTION OF HEAT EXCHANGER FABRICATION OF A TUBE AND SHELL HEAT EXCHANGER SYSTEM Project Topic and Materials
CONSTRUCTION OF HEAT EXCHANGER FABRICATION OF A TUBE AND SHELL HEAT EXCHANGER SYSTEM
There are two methods of constructing heat exchangers: Plate type. Parallel flow-the hot fluid and the coolant flow in the same direction.
Counter flow:- The hot fluid and the coolant flow in opposite direction. Cross flow: The hot fluid and the coolant flow at 90 angles (perpendicular) to each other.
The four heat exchanger parts identified were. Tube sheet shell Baffles single- pass heat exchangers have fluids that pass each other only once.
Multipass that exchangers have fluids that pass each other more than once through the use of a tubes and baffles.
Regenerative heat exchangers use the same fluid for heating and cooling. Non-regenerative heat exchangers use separate fluids for heating and cooling process.
CHAPTER ONE
INTRODUCTION
Heat exchanger is a device whose primary purpose is the transfer of energy between fluids. (J.R. Welty and R.E Witson Fundamentals of momentary heat and mass transfer 2nd edition 1975).
There are many types of heat exchangers, namely shell-and-tube exchanger, tubular and plate exchangers, the spiral plate heat exchanger etc.
In industrial processes, heat energy is transferred by a variety of methods which includes conduction as in electric resistance, waters, conduction as in exchangers, boilers and condensers, radiation as in furnace, radiant heat dryers and by special method such as electric heating.
The heat exchanger is a very important unit or system in small scale industries and also in process industries that their design has been highly developed. Designers of heat exchanger must be constantly aware of the difference between the idealized condition for and the real conditions of the mechanical expressions of their design and its environment. The result must satisfy process operational requirements (such as availability flexibility and maintainability) and do so economically. The most common material for heat exchanger is carbon steel.
Using the simple shell and tube heat exchanger in explain the process. Hot liquid flows through the tube and cold and more viscous liquid flows through the shell. The two liquids are collected and cooled by the forced convective air which is supplied by the fan. The shell side and tube side heat transfer coefficient are of comparable important and both must be large if a satisfactory overall coefficient is to be attained. The velocity and turbulence of the shell side liquids are as important as those of the tube side flow.
The purpose of this project is to constraint an efficient heat exchangers system which on reasonable basic will help in carrying out heat transfer operation in our laborating and in small scale industries. Cost of materials and labour is well as time were considered.
There are two methods of constructing heat exchangers: Plate type. Parallel flow-the hot fluid and the coolant flow in the same direction.
Counter flow:- The hot fluid and the coolant flow in opposite direction. Cross flow: The hot fluid and the coolant flow at 90 angles (perpendicular) to each other.
The four heat exchanger parts identified were. Tube sheet shell Baffles single- pass heat exchangers have fluids that pass each other only once.
Multipass that exchangers have fluids that pass each other more than once through the use of a tubes and baffles.
Regenerative heat exchangers use the same fluid for heating and cooling. Non-regenerative heat exchangers use separate fluids for heating and cooling process.
CHAPTER ONE
INTRODUCTION
Heat exchanger is a device whose primary purpose is the transfer of energy between fluids. (J.R. Welty and R.E Witson Fundamentals of momentary heat and mass transfer 2nd edition 1975).
There are many types of heat exchangers, namely shell-and-tube exchanger, tubular and plate exchangers, the spiral plate heat exchanger etc.
In industrial processes, heat energy is transferred by a variety of methods which includes conduction as in electric resistance, waters, conduction as in exchangers, boilers and condensers, radiation as in furnace, radiant heat dryers and by special method such as electric heating.
The heat exchanger is a very important unit or system in small scale industries and also in process industries that their design has been highly developed. Designers of heat exchanger must be constantly aware of the difference between the idealized condition for and the real conditions of the mechanical expressions of their design and its environment. The result must satisfy process operational requirements (such as availability flexibility and maintainability) and do so economically. The most common material for heat exchanger is carbon steel.
Using the simple shell and tube heat exchanger in explain the process. Hot liquid flows through the tube and cold and more viscous liquid flows through the shell. The two liquids are collected and cooled by the forced convective air which is supplied by the fan. The shell side and tube side heat transfer coefficient are of comparable important and both must be large if a satisfactory overall coefficient is to be attained. The velocity and turbulence of the shell side liquids are as important as those of the tube side flow.
The purpose of this project is to constraint an efficient heat exchangers system which on reasonable basic will help in carrying out heat transfer operation in our laborating and in small scale industries. Cost of materials and labour is well as time were considered.
Download Full Project
Download
Get the complete project document.
Source: https://www.iprojectmaster.com/chemical-engineering/final-year-project-materials/construction-of-heat-exchanger-fabrication-of-a-tube-and-shell-heat-exchanger-system
Related Project Topics
All Project Topics
📂 Browse by Department
- Commerce
- Public Health
- Zoology
- Electrical & Electronics
- Islamic & Arabic Studies
- Project Management
- Final Year Project Topic
- History
- Industrial & Relations Personnel Management
- Quantity & Surveying
- Building and Technology
- Economics
- Psychology
- Guidance and Counseling
- Secretarial Studies
- Petroleum Engineering
- Physiology
- Marketing
- Philosophy
- Insurance
- Production & Operations Mgt
- Mass Communication
- Library Science
- Veterinary
- Marine and Transport
- Curriculum Studies
- Accounting
- Nursing
- Urban & Regional Planing
- Purchasing & Supply
- Business Administration
- Law
- Soil Science
- International Relations
- Criminology
- Computer Science
- Public Administration
- Sociology
- Geography
- Brewing Science
- Biochemistry
- Geology
- Applied Science
- Anatomy
- Agricultural Science
- Agricultural Extension
- Forestry & Wildlife
- Chemistry
- Mathematics Education
- Office Technology
- Political Science
- Home Economics
- Information Technology
- Business Management
- Business Education
- Educational Technology
- Micro Biology
- Industrial Chemistry
- Physics
- Medicine
- Health & Sex Education
- Civil Engineering
- Human Kinetics
- Computer Engineering
- African Languages
- Mechanical Engineering
- Banking and Finance
- Education
- Food Science & Tech
- Pharmacy
- Architecture
- Science Labouratory
- Human Resource Management
- New Project Topics
- Tourism & Hospitality
- Animal Science
- Social Studies
- French
- Statistics
- English
- Environmental Science
- Fine & Applied Arts
- Theatre Arts
- Actuarial Science
- Entrepreneurship
- Estate Management
- Computer Science Education
- Biology
- Accounting Education
- Adult Education
- Chemical Engineering
- Biblical and Theology
- Fishery & Aquaculture
- Vocational Studies
- Religious & Cultural Studies