International Conference on Fluid Mechanics Approaches in Thermal Engineering - (ICFMATE-26)


26th - 27th December, 2026 | Manila, Philippines

Multi-format (In-person/Virtual)

Registration Options

Explore conference registration categories designed for every mode of participation.

Important Dates

Pre-registration Deadline

26th November, 2026

Paper Submission Deadline

1st December, 2026

Last Date Of Registration

11th December, 2026

Date Of Conference

26th - 27th December, 2026

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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 7 SDG 7 — Affordable and Clean Energy
SDG 9 SDG 9 — Industry, Innovation and Infrastructure
SDG 11 SDG 11 — Sustainable Cities and Communities
SDG 12 SDG 12 — Responsible Consumption and Production
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All Session Tracks

Track 01
Fundamentals of Fluid Mechanics

This track focuses on the foundational principles of fluid mechanics, including the study of fluid properties and behavior under various conditions. Participants will explore both laminar and turbulent flow regimes and their implications in thermal engineering applications.

Track 02
Computational Fluid Dynamics in Thermal Engineering

This session emphasizes the role of computational fluid dynamics (CFD) in analyzing complex thermal systems. Researchers will present innovative CFD methodologies and their applications in optimizing thermal performance.

Track 03
Fluid-Structure Interaction in Engineering Systems

This track investigates the interactions between fluid flows and structural components in thermal engineering contexts. Presentations will cover modeling techniques and case studies that highlight the significance of fluid-structure interaction.

Track 04
Heat Transfer Mechanisms in Fluid Systems

This session delves into the various heat transfer mechanisms that occur within fluid systems, including conduction, convection, and radiation. Researchers will discuss experimental and numerical approaches to enhance heat transfer efficiency.

Track 05
Pump and Pipe System Optimization

This track addresses the design and optimization of pump and pipe systems in thermal engineering applications. Participants will share insights on flow measurement techniques and strategies for improving system performance.

Track 06
Advanced Techniques in Flow Modeling

This session presents cutting-edge techniques in flow modeling, focusing on both theoretical and practical approaches. Researchers will showcase advancements in modeling methodologies that enhance the understanding of fluid dynamics.

Track 07
Thermal-Fluid Simulations for Industrial Applications

This track highlights the application of thermal-fluid simulations in various industrial contexts. Presentations will cover case studies that demonstrate the impact of simulations on improving operational efficiency and safety.

Track 08
Flow Control Strategies in Thermal Engineering

This session explores innovative flow control strategies aimed at optimizing thermal systems. Researchers will discuss the implementation of active and passive control methods to enhance system performance.

Track 09
Multiphase Flow Dynamics

This track focuses on the complexities of multiphase flow dynamics and their relevance in thermal engineering. Participants will present research on modeling and analysis techniques for multiphase systems.

Track 10
Thermal-Fluid Design Innovations

This session showcases innovations in thermal-fluid design that address contemporary engineering challenges. Researchers will discuss novel designs and their implications for efficiency and sustainability.

Track 11
Measurement Techniques in Fluid Flow Analysis

This track emphasizes the importance of accurate measurement techniques in fluid flow analysis. Participants will present advancements in instrumentation and methodologies for capturing fluid behavior in thermal systems.