tiyagi
Aerodynamic Interference and Rotor Optimization in Multirotor UAVs examines aerodynamic interactions and rotor performance in multirotor unmanned aerial vehicles. The book focuses on the effects of rotor-to-rotor interference and related aerodynamic phenomena that influence thrust generation, efficiency, stability, and overall vehicle performance. It introduces fundamental concepts in rotor aerodynamics, multirotor configurations, airflow interaction, propulsion systems, and aerodynamic analysis. Attention is given to the relationship between rotor arrangement, operating conditions, aerodynamic interference, and rotor performance. The discussion also considers optimization approaches for improving rotor characteristics and supporting efficient multirotor UAV design. Key engineering considerations include thrust, power requirements, aerodynamic efficiency, rotor geometry, flow behavior, and performance assessment. By connecting aerodynamic analysis with rotor optimization, this book provides a technical foundation for understanding performance-related challenges in multirotor UAV systems. It is intended for aerospace and mechanical engineering students, researchers, UAV designers, aerodynamics specialists, and professionals interested in unmanned aerial systems, rotorcraft technology, propulsion, and computational or experimental approaches to UAV performance analysis.