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ICTPTE · Registering as Listener

International Conference on Thermophysical Properties and Thermal Engineering Applications

13 - 14 Oct 2026 Durban, South Africa Standard / Physical Participation
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$145
virtual · $175 in person
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Registration summary

ConferenceICTPTE
ModeStandard / Physical
ParticipationListener
Registration fee$175.00
Bank charges (5.8%)$10.15
Total payable$185.15
Includes all bank processing charges — the amount above is exactly what will be charged.

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• Conference Session Tracks •
SDGs
SDG-Aligned Research Themes

ICTPTE conference tracks support global knowledge exchange, innovation, and sustainable development priorities across diverse disciplines.

SDG 7 - Affordable and Clean Energy SDG 9 - Industry, Innovation and Infrastructure SDG 11 - Sustainable Cities and Communities SDG 12 - Responsible Consumption and Production
01 Thermal Conductivity and Heat Transfer Mechanisms +
This track focuses on the latest advancements in understanding thermal conductivity and the mechanisms of heat transfer in various materials. Researchers are invited to present experimental and theoretical studies that explore the implications of these properties in thermal engineering applications.
02 Phase Change Materials and Their Applications +
This session will delve into the properties and applications of phase change materials in thermal energy storage and management. Contributions are encouraged that examine the thermophysical characteristics and performance of these materials in real-world scenarios.
03 Viscosity and Fluid Dynamics in Thermal Systems +
This track aims to explore the role of viscosity in thermal-fluid interactions and its impact on system performance. Papers that investigate the relationship between fluid dynamics and thermal properties in engineering applications are particularly welcome.
04 Material Characterization Techniques +
This session will highlight innovative methods for characterizing thermophysical properties of materials. Researchers are invited to share their findings on experimental techniques and modeling approaches that enhance material performance in thermal applications.
05 Thermal Property Modeling and Simulation +
This track focuses on computational approaches for modeling and simulating thermophysical properties of materials. Contributions that integrate theoretical models with experimental data to predict material behavior under various thermal conditions are encouraged.
06 Advanced Thermal Analysis Techniques +
This session will cover cutting-edge thermal analysis techniques used to assess material properties. Researchers are invited to present their work on methodologies such as differential scanning calorimetry and thermogravimetric analysis.
07 Industrial Applications of Thermal Engineering +
This track aims to discuss practical applications of thermal engineering in various industries, including energy, manufacturing, and materials processing. Papers that showcase case studies or innovative solutions to thermal challenges in industrial settings are welcome.
08 Heat Capacity Measurement Innovations +
This session will explore novel techniques for measuring heat capacity and their implications for material performance. Researchers are encouraged to present advancements that enhance the accuracy and efficiency of heat capacity assessments.
09 Thermal Diffusivity and Its Implications +
This track will examine the significance of thermal diffusivity in material performance and thermal management. Contributions that analyze the interplay between thermal diffusivity and other thermophysical properties are particularly encouraged.
10 Property-Based Design in Thermal Engineering +
This session will focus on the principles of property-based design in the context of thermal engineering. Researchers are invited to discuss how thermophysical properties can be leveraged to optimize material selection and system design.
11 Thermal Material Performance Under Extreme Conditions +
This track will investigate the performance of thermal materials under extreme environmental conditions. Contributions that assess the durability and reliability of materials in high-temperature or high-pressure scenarios are highly encouraged.