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International Conference on Experimental Aircraft and Testing

3rd Dec – 4th Dec 2026 Bangkok, Thailand Standard / Physical Participation
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ConferenceICEAT
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Conference Session Tracks
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SDG-Aligned Research Themes

International Conference on Experimental Aircraft and Testing conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.

SDG 7 - Affordable and Clean Energy SDG 9 - Industry, Innovation and Infrastructure SDG 11 - Sustainable Cities and Communities SDG 12 - Responsible Consumption and Production

This track focuses on the foundational principles of aerodynamics, including lift and drag analysis. Participants will explore the theoretical underpinnings and practical applications of aerodynamic modeling.

This session delves into advanced control systems for aircraft, emphasizing control law design and stability. Discussions will include innovative approaches to enhance flight mechanics and performance.

This track covers the latest advancements in computational methods for aerodynamic analysis. Researchers will present their findings on computational fluid dynamics and its applications in aerospace engineering.

This session examines strategies to optimize aerodynamic efficiency in various flight regimes. Participants will share insights on enhancing aerodynamic performance through innovative design and analysis.

This track focuses on the complexities of unsteady aerodynamic phenomena and their implications for aircraft design. Presentations will address challenges and solutions in modeling and testing unsteady flows.

This session explores the unique challenges associated with supersonic and hypersonic flight. Researchers will discuss aerodynamic characteristics and control strategies for high-speed aircraft.

This track investigates innovative techniques for controlling aerodynamic flow to enhance performance. Topics will include passive and active flow control methods and their experimental validation.

This session highlights the integration of intelligent systems in flight control applications. Participants will explore machine learning and adaptive control strategies for improved aircraft maneuverability.

This track focuses on the development and validation of aerodynamic models through simulation techniques. Researchers will present case studies demonstrating the effectiveness of various modeling approaches.

This session emphasizes the importance of experimental methods in understanding aerodynamic behavior. Participants will share findings from wind tunnel tests and flight experiments.

This track addresses optimization techniques for control systems in aerospace applications. Discussions will include methodologies for enhancing system performance and reliability.

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