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**Introduction**
Advanced combustion strategies for micro gas turbines have gained significant attention in recent years due to their potential to improve efficiency and reduce emissions. The use of micro gas turbines in various applications such as distributed power generation, combined heat and power systems, and unmanned aerial vehicles has led to a growing interest in developing innovative combustion technologies to enhance their performance.
This thesis aims to investigate and analyze advanced combustion strategies for micro gas turbines to improve their efficiency, reduce emissions, and enhance overall performance. The research will focus on understanding the combustion mechanisms, exploring novel combustion techniques, and evaluating their impact on micro gas turbine operation.
**Table of Contents**
**Chapter 1: Introduction**
1.1 Introduction
1.2 Background of study
1.3 Problem Statement
1.4 Objective of study
1.5 Limitation of study
1.6 Scope of study
1.7 Significance of study
1.8 Structure of the Thesis
1.9 Definition of Terms
**Chapter 2: Literature Review**
2.1 Overview of micro gas turbines
2.2 Combustion principles
2.3 Conventional combustion strategies
2.4 Advanced combustion techniques
2.5 Emission control strategies
2.6 Fuel flexibility in micro gas turbines
2.7 Performance evaluation metrics
2.8 Computational modeling of combustion
2.9 Experimental studies on advanced combustion
2.10 Comparative analysis of combustion strategies
**Chapter 3: System Design and Methodology**
3.1 Micro gas turbine system architecture
3.2 Combustion chamber design
3.3 Fuel injection systems
3.4 Ignition systems
3.5 Control strategies for advanced combustion
3.6 Experimental setup and testing procedures
3.7 Data acquisition and analysis techniques
3.8 Simulation tools and methodologies
**Chapter 4: System Implementation**
4.1 Development of advanced combustion prototype
4.2 Performance testing and validation
4.3 Optimization of combustion parameters
4.4 Emission measurements and analysis
4.5 Efficiency improvements
4.6 Integration with micro gas turbine systems
4.7 Field testing and real-world application
4.8 Performance comparison with conventional systems
**Chapter 5: Conclusion and Summary**
5.1 Summary of key findings
5.2 Discussion of results
5.3 Implications for future research
5.4 Conclusion and recommendations
**Thesis Overview**
The advancement of combustion strategies for micro gas turbines is essential for enhancing their performance, improving efficiency, and reducing emissions. This thesis will provide a comprehensive analysis of advanced combustion technologies, including novel combustion techniques, emission control strategies, and fuel flexibility options for micro gas turbines.
The literature review will cover key concepts related to micro gas turbines, combustion principles, conventional and advanced combustion strategies, and performance evaluation metrics. The system design and methodology chapter will focus on the development of a combustion prototype, testing procedures, data analysis techniques, and simulation tools.
The implementation chapter will detail the performance testing, optimization of combustion parameters, emission measurements, efficiency improvements, and integration with micro gas turbine systems. The conclusion and summary chapter will summarize key findings, discuss the implications for future research, and provide recommendations for further study in this field.
Overall, this thesis aims to contribute to the advancement of combustion strategies for micro gas turbines and explore innovative solutions to enhance their performance in various applications.
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