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International Conference on Propulsion and Aerospace Energy

๐Ÿ“… 7โ€“8 Jan 2027 ๐Ÿ“ Auckland, New Zealand ๐Ÿ‘ค Standard / Listener

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$185

virtual ยท $185 in person

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Conference session tracks

Key research areas covered across the sessions โ€” tap a track to read more.

This track focuses on the latest methodologies and applications of computational fluid dynamics in aerospace engineering. Participants are encouraged to present innovative approaches that enhance the accuracy and efficiency of fluid flow simulations.

This session will explore cutting-edge design optimization techniques specifically tailored for aircraft development. Contributions should highlight novel algorithms and their practical applications in improving aircraft performance.

This track invites discussions on the application of finite element analysis in the design and evaluation of aerospace structures. Papers should emphasize advancements in modeling techniques and their impact on structural integrity assessments.

This session will delve into the integration of digital twin technologies in the aerospace sector. Presentations should focus on how digital twins can enhance design processes, maintenance strategies, and operational efficiencies.

This track aims to address the challenges and solutions in multidisciplinary design optimization for aerospace applications. Contributions should demonstrate the synergistic effects of integrating various engineering disciplines in the design process.

This session will cover advancements in computational mechanics and their applications in structural modeling for aerospace systems. Papers should discuss innovative modeling techniques that improve predictive capabilities and design reliability.

This track focuses on the role of high-performance computing in advancing aerospace design methodologies. Participants are encouraged to present case studies that showcase the impact of computational power on design efficiency and innovation.

This session will explore various aerodynamic optimization strategies used in aircraft design. Contributions should highlight the interplay between theoretical approaches and practical implementations in enhancing aerodynamic performance.

This track invites discussions on the development and application of design automation tools in aerospace engineering. Papers should focus on how integrated design tools can streamline workflows and improve collaboration among engineering teams.

This session will examine the role of virtual prototyping in the aerospace development lifecycle. Contributions should emphasize the benefits of virtual testing and simulation in reducing time and costs associated with physical prototyping.

This track focuses on the advancements in computational aerodynamics and their practical applications in aerospace engineering. Participants are encouraged to present research that bridges the gap between computational methods and real-world aerodynamic challenges.