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Hybrid Event

1st - 2nd September 2026 | Barcelona, Spain

International Conference on Thermodynamics Applications in Thermal Engineering (ICTATE - 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 8 — Decent Work and Economic Growth
SDG 9 — Industry, Innovation and Infrastructure
SDG 12 — Responsible Consumption and Production
SDG 13 — Climate Action
Explore All Session Tracks
Track 01
Advancements in Thermodynamic Cycles

This track focuses on the latest developments in thermodynamic cycles, including innovative designs and performance enhancements. Researchers are encouraged to present their findings on efficiency improvements and practical applications in various industries.

Track 02
Energy Conversion Technologies

This session will explore cutting-edge technologies for energy conversion, emphasizing thermodynamic principles. Papers discussing novel methods and their implications for sustainable energy solutions are particularly welcome.

Track 03
Entropy Analysis in Thermal Systems

Entropy analysis plays a crucial role in understanding thermal systems' efficiency and performance. This track invites contributions that utilize entropy concepts to optimize thermal processes and enhance system design.

Track 04
Thermodynamic Modeling and Simulations

This session emphasizes the importance of thermodynamic modeling and simulations in predicting system behavior. Participants are encouraged to share their methodologies and case studies that demonstrate the effectiveness of these approaches.

Track 05
Heat Engines and Refrigeration Cycles

This track will cover the design, analysis, and optimization of heat engines and refrigeration cycles. Researchers are invited to present innovative solutions that improve performance and energy efficiency in these systems.

Track 06
Thermodynamic Properties and Their Applications

Understanding thermodynamic properties is essential for effective thermal engineering applications. This session seeks papers that investigate the measurement and application of these properties in real-world scenarios.

Track 07
Energy Efficiency in Thermal Engineering

This track focuses on strategies and technologies aimed at enhancing energy efficiency in thermal engineering applications. Contributions that highlight case studies and practical implementations are encouraged.

Track 08
Thermodynamic Optimization Techniques

Optimization techniques are vital for improving thermal system performance and efficiency. This session invites papers that explore novel optimization methods and their applications in various thermal processes.

Track 09
Industrial Applications of Thermodynamics

This track will address the application of thermodynamic principles in industrial settings, including case studies and best practices. Participants are encouraged to share insights on overcoming challenges in the implementation of thermodynamic solutions.

Track 10
Advanced Thermodynamic Methods

This session will highlight advanced methods in thermodynamics, including new theoretical approaches and computational techniques. Researchers are invited to present innovative methodologies that push the boundaries of traditional thermodynamic analysis.

Track 11
Thermal System Analysis and Design

This track focuses on the comprehensive analysis and design of thermal systems, integrating thermodynamic principles with engineering practices. Contributions that showcase innovative design methodologies and analytical techniques are highly encouraged.

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.