Hybrid Conferencee

International Conference on Computational Fluid Dynamics in Aviation (ICCFDA - 26)

16th - 17th November 2026 | Kuala Lumpur, Malaysia

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Certificate of Presentation:
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Networking with Global Experts:
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Keynote Speaker Sessions:
"Don’t miss our Keynote Sessions in Kuala Lumpur, featuring global leaders and innovators sharing their knowledge."
Best Paper & Best Paper Presentation Award:
"Submit your paper and stand a chance to win the Best Paper Presentation Award. The winner will be recognized at the conference in Kuala Lumpur."
SDG-Inspired Conference Focus:
"Our conference will highlight research that addresses global sustainability, inclusive education, and solutions for environmental challenges."

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 3
SDG 3 Good Health and Well-being
SDG 9
SDG 9 Industry, Innovation and Infrastructure
SDG 11
SDG 11 Sustainable Cities and Communities
Track 01

Advancements in Turbulence Modeling

This track focuses on the latest developments in turbulence modeling techniques applicable to aerospace engineering. Researchers are encouraged to present novel approaches that enhance the accuracy of turbulence simulations in various flight regimes.

Track 02

High-Fidelity CFD Techniques

This session aims to explore high-fidelity computational fluid dynamics methods that provide detailed insights into complex aerodynamic phenomena. Contributions should highlight the application of these techniques in real-world aerospace scenarios.

Track 03

CFD in Hypersonic Flow Analysis

This track will delve into the challenges and solutions related to computational fluid dynamics in hypersonic flow environments. Papers should address innovative CFD strategies that improve understanding and prediction of hypersonic vehicle performance.

Track 04

Fluid-Structure Interaction in Aerospace Applications

This session will cover the integration of fluid dynamics and structural analysis in aerospace engineering. Authors are invited to discuss methodologies and case studies that demonstrate the impact of fluid-structure interactions on aircraft design and performance.

Track 05

CFD Optimization Techniques

This track emphasizes optimization methodologies within computational fluid dynamics to enhance aerodynamic performance. Participants are encouraged to present research that showcases effective optimization strategies in aircraft design and analysis.

Track 06

Mesh Generation and Adaptation Strategies

This session will focus on innovative mesh generation techniques and adaptive methods that improve the accuracy of CFD simulations. Contributions should address the challenges of mesh quality and computational efficiency in complex geometries.

Track 07

Aeroacoustics and Noise Prediction

This track aims to explore the role of computational fluid dynamics in predicting aerodynamic noise and its implications for aircraft design. Papers should present methodologies for noise reduction and the impact of aerodynamic shapes on sound generation.

Track 08

Unsteady Aerodynamics and Dynamic Simulations

This session will focus on unsteady aerodynamic phenomena and their simulation using advanced CFD techniques. Researchers are invited to share insights on the effects of time-dependent flow conditions on aircraft performance.

Track 09

CFD Validation and Benchmarking

This track will address the importance of validation and benchmarking in computational fluid dynamics for aerospace applications. Contributions should include case studies that demonstrate the reliability and accuracy of CFD models against experimental data.

Track 10

Parallel Computing in CFD Applications

This session will explore the use of parallel computing techniques to enhance the performance and scalability of CFD simulations. Papers should discuss the implementation of parallel algorithms and their impact on solving complex aerospace problems.

Track 11

Thermal Fluid Simulation in Aerospace Systems

This track will examine the integration of thermal fluid dynamics within aerospace engineering contexts. Researchers are encouraged to present studies that investigate thermal management and its effects on overall system performance.