Fundamentals of phase change thermal energy storage (latent heat storage) and technologies for improving functionality.
S20407
★Focusing on the technology that efficiently stores heat by utilizing phase changes of substances (melting/freezing) and providing a thorough explanation★ Heat demand! Smart community!
**Lecture Summary** Much of the unused energy, such as solar energy and industrial waste heat, is unstable, unevenly distributed, and exists in a diluted form. Therefore, energy storage becomes a crucial technology for effectively utilizing these resources. In this lecture, we will first focus on technologies for storing heat, particularly those that efficiently store heat by utilizing phase changes in materials (melting/freezing), and we will gently explain the fundamental concepts, including the social background. Next, we will introduce application examples and research and development trends in phase change thermal storage. Additionally, we will discuss methods and application examples for effectively utilizing the phenomenon of supercooling, which allows materials to remain in a liquid state below their melting point, as a means to enhance the functionality of phase change thermal storage.
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basic information
Venue Kawasaki City Educational and Cultural Center, Room 1【Kanagawa, Kawasaki City】 10-15 minutes walk from JR Kawasaki Station; buses are available from Kawasaki Station Date and Time April 18, 2012 (Wednesday) 13:30-16:30 (Q&A 16:00-16:30)
Price information
49350
Price range
P2
Delivery Time
P2
Applications/Examples of results
1. Why the Need for Thermal Energy Storage is Increasing Again 1-1 Changes in Heat Demand 1-2 Characteristics of Renewable Energy 1-3 Challenges of Smart Communities 2. Methods and Functions of Thermal Energy Storage 2-1 Principles of Thermal Energy Storage 2-1-1 Sensible Heat Storage 2-1-2 Phase Change Storage (Latent Heat Storage) 2-1-3 Chemical Storage 2-2 Thermal Energy Storage Devices 2-3 Thermal Energy Storage Functions 3. Thermal Energy Storage Materials and Their Characteristics 3-1 Sensible Heat Storage Materials 3-2 Phase Change Storage Materials 3-3 Chemical Storage Materials 4. Practical Application and Research Development Trends of Phase Change Storage 4-1 Research and Development History 4-2 Examples of Practical Applications 4-3 Examples of Research and Development 5. Principles and Application Examples of Supercooled Thermal Energy Storage 5-1 Supercooling Phenomenon and Its Pros and Cons 5-2 Related Patents 5-3 Examples of Practical Applications 5-4 Examples of Research and Development 6. Functional Improvement of Thermal Energy Storage Materials 6-1 Improvement of Thermal Conductivity 6-2 Improvement of Melting Temperature 6-3 Improvement of Supercooling Degree 7. Conclusion [Q&A and Business Card Exchange]
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