Fluid Mechanics & Thermodynamics Symposium 2027

September 14, 2027 | Utah, USA

Overview

Welcome to the Fluid Mechanics & Thermodynamics Symposium 2027 (FMTS2027), scheduled for September 14-15, 2027, a premier gathering for researchers, engineers, and industry professionals dedicated to the physical sciences. Set against the dynamic backdrop of Utah, USA, this symposium provides an international platform to explore both the fundamental and applied aspects of fluid dynamics and thermal energy systems.

The core theme of FMTS2027 focuses on the critical intersection of multiphase flow dynamics, heat transfer mechanisms, and advanced computational fluid dynamics (CFD). Attendees will engage with cutting-edge research spanning turbulence modeling, compressible flows, and sustainable thermal management solutions.

Whether you are presenting novel research or seeking to expand your professional network, this symposium offers a robust agenda of keynote sessions, technical panels, and collaborative workshops. Join us to foster interdisciplinary dialogue and drive the next generation of innovations in thermal and fluid engineering.

Organizing Committee

Member

Prof. Dr.-Ing.habil. Günter H. Schnerr

University of Munich
Germany

Member

Dr. Sergey V. Meleshko

Suranaree University of Technology
Thailand

Member

Prof. Ramesh Agarwal

Washington University
USA

Member

Prof. Junfeng Zhang

Laurentian University
Canada

Member

Prof. Yukio Tamura

Tokyo Polytechnic University
Japan

Member

Prof. Sujata Dash

Nagaland University
India

Scientific Tracks

1 Aerodynamics of Wind Turbine Blades and Wake Interactions
2 AI and Machine Learning Surrogates for Real-Time CFD Simulations
3 Biofluid Mechanics: Cardiovascular and Respiratory Flow Simulation
4 Boundary Layer Control and Active Drag Reduction Techniques
5 Cavitation Modeling and Mitigation in Hydraulic Machinery
6 Computational Fluid Dynamics (CFD) in Complex Turbulent Flows
7 Cryogenic Fluid Management for Space Exploration Applications
8 Droplet Dynamics and Atomization in Advanced Combustion Engines
9 Entropy Generation Minimization in Advanced Thermal Systems
10 Heat Transfer Enhancements in Electronic Cooling Systems
11 HVAC Optimization for Energy-Efficient and Net-Zero Buildings
12 Hypersonic Aerothermodynamics and Shock Wave Interactions
13 Magnetohydrodynamics (MHD) for Future Fusion Reactors
14 Microfluidics and Nanofluidics in Biomedical Applications
15 Multiphase Flow Dynamics in Oil, Gas, and Chemical Processing
16 Natural Convection and Heat Transfer in Porous Media
17 Phase Change Materials (PCMs) for Thermal Energy Storage
18 Rheology and Non-Newtonian Fluid Dynamics in Industrial Processes
19 Supercritical CO2 Cycles for High-Efficiency Power Generation
20 Thermal Management Systems for High-Density EV Batteries