1. Introduction 1.1 Background and Motivation 1.2 Objectives of the Study 1.3 Structure of the Thesis 2. Fundamentals of Aerodynamics 2.1 Basic Principles of Aerodynamics 2.2 Role in Vehicle Performance 2.3 Aerodynamic Drag Reduction Techniques 3. Thermal Management in Combustion Engines 3.1 Heat Generation and Dissipation 3.2 Cooling System Technologies 3.3 Thermal Efficiency Optimization 4. Design Considerations for High-Efficiency 4.1 Fuel Efficiency and Emissions 4.2 Lightweight Materials Usage 4.3 Integration of Aerodynamics and Thermal Systems 5. Computational Methods for Analysis 5.1 Simulation Techniques in Aerodynamics 5.2 Thermal Management Modeling 5.3 Software Tools and Applications 6. Case Studies and Practical Applications 6.1 Successful Vehicle Designs 6.2 Lessons Learned from Past Models 6.3 Industry Trends and Innovations 7. Challenges and Future Directions 7.1 Technological Limitations 7.2 Regulatory and Environmental Constraints 7.3 Future Research Opportunities 8. Conclusion 8.1 Summary of Key Findings 8.2 Implications for Vehicle Design 8.3 Final Thoughts and Recommendations
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