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Hybrid Event

20th - 21st July 2026 | Budapest, Hungary

International Conference on Marine Fluid Dynamics and Engineering Applications (ICMFDEA - 26)

4

Days

4

Hrs

07

Min

02

Sec

Conference Program

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.

Why it matters

SDG 7 — Affordable and Clean Energy
SDG 9 — Industry, Innovation and Infrastructure
SDG 11 — Sustainable Cities and Communities
SDG 12 — Responsible Consumption and Production
SDG 13 — Climate Action
Explore All Session Tracks
Track 01
Advancements in Marine Fluid Dynamics

This track focuses on the latest research and technological advancements in marine fluid dynamics. Topics include innovative methodologies and applications that enhance our understanding of fluid behavior in marine environments.

Track 02
Computational Fluid Dynamics in Marine Engineering

This session will explore the application of computational fluid dynamics (CFD) techniques in marine engineering. Participants will discuss case studies and simulations that demonstrate the effectiveness of CFD in solving complex marine fluid problems.

Track 03
Hydrodynamic Analysis of Marine Structures

This track addresses the hydrodynamic analysis of various marine structures, including ships, offshore platforms, and underwater vehicles. Emphasis will be placed on the interaction between fluid flow and structural integrity.

Track 04
Turbulence Modeling in Marine Environments

This session will delve into the challenges and advancements in turbulence modeling specific to marine environments. Researchers will present their findings on the impact of turbulence on marine fluid dynamics and engineering applications.

Track 05
Wave-Structure Interactions

This track focuses on the interactions between waves and marine structures, examining both theoretical and experimental approaches. Discussions will include the implications of these interactions on design and safety in marine engineering.

Track 06
Vortex-Induced Vibrations in Marine Applications

This session will investigate the phenomenon of vortex-induced vibrations (VIV) and their impact on marine structures. Researchers will share insights into mitigation strategies and design considerations to enhance structural performance.

Track 07
Optimization of Ship Resistance

This track will cover methodologies for optimizing ship resistance through advanced fluid dynamics techniques. Participants will discuss the implications of resistance reduction on fuel efficiency and environmental sustainability.

Track 08
Marine Flow Measurement Techniques

This session will highlight innovative techniques for measuring marine flow characteristics. Emphasis will be placed on the accuracy and reliability of measurement tools in various marine engineering contexts.

Track 09
Multiphase Flow in Offshore Systems

This track will explore the complexities of multiphase flow in offshore fluid systems. Researchers will present their findings on the behavior of different phases and their implications for engineering design and operation.

Track 10
Fluid-Structure Interaction in Marine Engineering

This session will focus on the principles and applications of fluid-structure interaction (FSI) in marine engineering. Discussions will include modeling approaches and real-world case studies that highlight FSI challenges.

Track 11
Energy-Efficient Solutions in Marine Fluid Dynamics

This track will examine the development of energy-efficient fluid solutions within marine engineering. Participants will discuss innovative designs and technologies aimed at reducing energy consumption and enhancing performance.

2026 UPDATE

Consistent Academic Support

Science Net ensures that research activities continue without interruption in the current global situation. Participants can engage through digital and hybrid conference formats.