DESIGN, CONSTRUCTION AND EVALUATION OF 1.5KVA FUEL LESS GENERATOR BY SELF INDUCTION. BETWEEN 100
ATTENTION:
BEFORE YOU READ THE ABSTRACT OR CHAPTER ONE OF THE PROJECT TOPICS BELOW, PLEASE READ THE INFORMATION BELOW.THANK YOU!
INFORMATION:
YOU CAN GET THE COMPLETE PROJECT OF THE TOPIC BELOW. THE FULL PROJECT COST N5,000 ONLY. THE FULL INFORMATION ON HOW TO PAY AND GET THE COMPLETE PROJECT IS AT THE BOTTOM OF THIS PAGE. OR
YOU CAN CALL: 08068231953, 08137701720,
WHATSAPP/TELEGRAM US ON: 08137701720
DESIGN, CONSTRUCTION AND EVALUATION OF 1.5KVA FUEL LESS GENERATOR BY SELF INDUCTION. BETWEEN 100
Abstract
This project focuses on the design, construction, and evaluation of a 1.5 kVA fuelless generator using self-induction principles. The system utilizes electromagnetic induction between coils to generate electric power without conventional fossil fuels. Key components include an induction motor, alternator, capacitor bank, and control circuitry. Performance evaluation shows that the system can provide stable voltage output suitable for domestic and small-scale applications. The fuelless generator demonstrates a sustainable alternative to fuel-powered systems, reducing operational costs and environmental pollution while promoting renewable energy innovation.
Keywords: Fuelless generator, self-induction, renewable energy, electromagnetic induction, sustainability.
Table of Content
Chapter One: Introduction
1.1 Background of the Study
1.2 Statement of the Problem
1.3 Aim and Objectives of the Study
1.4 Research Questions
1.5 Significance of the Study
1.6 Scope and Limitation of the Study
1.7 Justification of the Study
1.8 Definition of Terms
Chapter Two: Literature Review
2.1 Concept of Electric Power Generation
2.2 Principle of Electromagnetic Induction
2.3 Overview of Fuelless Generators
2.4 Previous Designs and Their Limitations
2.5 Theoretical Framework of Self-Induction
2.6 Review of Related Technologies and Systems
2.7 Summary of Literature
Chapter Three: Materials and Methods
3.1 Research Design
3.2 System Design and Operation Principle
3.3 Components Description
3.3.1 Induction Motor
3.3.2 Alternator
3.3.3 Capacitor Bank
3.3.4 Control Circuit
3.4 Design Calculations and Circuit Analysis
3.5 Construction Procedures
3.6 Testing and Evaluation Procedures
3.7 Safety Precautions
Chapter Four: Results and Discussion
4.1 System Assembly and Testing
4.2 Performance Evaluation
4.3 Output Power and Efficiency Analysis
4.4 Comparison with Conventional Generators
4.5 Discussion of Findings
4.6 Challenges Encountered During Construction
Chapter Five: Summary, Conclusion, and Recommendations
5.1 Summary of Findings
5.2 Conclusion
5.3 Recommendations
5.4 Suggestions for Further Improvement
HOW TO RECEIVE PROJECT MATERIAL (S)
After paying the appropriate amount (#5,000) into our bank Account below, send the following information to any of the numbers below
08068231953, 08137701720,
(1) Your project topics
(2) Email Address
(3) Payment Name
OR you drop them on our WhatsApp/Telegram, 08137701720
We will send your material(s) after we receive bank alert
BANK ACCOUNTS
Account Name: AMUTAH DANIEL CHUKWUDI
Account Number: 0046579864
Bank: GTBank.
OR
Account Name: AMUTAH DANIEL CHUKWUDI
Account Number: 3139283609
Bank: FIRST BANK
OR
Account Name: AMUTAH DANIEL CHUKWUDI
Account Number: 2023350498
Bank: UBA.
FOR MORE INFORMATION, CALL:
08068231953, 08137701720, 08154275408
http://graduateprojects.com.ng