Conceptual Design of an AI-Assisted PCM Thermal Panel for Sustainable Building Applications.
Authors/Creators
- 1. Little Flower college (autonomous),1st year BSc Computer Science, guruvayur, india
- 2. Little Flower College (autonomous). 1st year BSc Computer Science, guruvayur, india
- 3. Little Flower College (autonomous), 1st year BSc Computer Science, guruvayur, india
- 4. Little Flower College (autonomous), guruvayur, india
Description
Preservation copy of an article published in International Journal of Technology and Emerging Research. Read the full article: https://ioro.org/ijter/article/035682234012/035682234012.
The increasing demand for heating and cooling in buildings, driven by rapid urbanization and climate change, has led to higher energy consumption and carbon emissions. Improving thermal energy efficiency has therefore become an important objective in sustainable building design. This paper proposes the conceptual design of an Artificial Intelligence (AI)-assisted Phase Change Material (PCM) thermal panel for residential and commercial buildings. The proposed system combines encapsulated PCMs with embedded temperature sensors and an AI-assisted control framework to improve indoor thermal regulation. During periods of high temperature, the PCM absorbs and stores excess heat, while during cooler conditions it releases the stored heat, thereby maintaining a more stable indoor temperature and reducing dependence on conventional heating, ventilation, and air-conditioning (HVAC) systems. The AI component continuously analyzes environmental parameters such as indoor and outdoor temperature, humidity, occupancy, and weather conditions to support intelligent thermal management and optimize panel operation under different climatic conditions. This paper presents the conceptual architecture, operating principle, and expected performance of the proposed system based on existing research in PCM technology and AI-assisted energy management. The proposed design is expected to enhance thermal comfort, improve building energy efficiency, reduce electricity consumption and carbon emissions, and support the development of sustainable and smart building infrastructure.
Notes
Files
035682234012.pdf
Files
(240.4 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:4a4cb26a66e0e0701694bc6055139c1b
|
240.4 kB | Preview Download |
Additional details
Identifiers
- DOI
- 10.64823/ijter.2621003
- ISSN
- 3068-109X
- ISSN
- 3068-1995
Related works
- Is identical to
- https://ioro.org/ijter/article/035682234012/035682234012 (URL)
References
- H. Mehling and L. F. Cabeza, Heat and Cold Storage with PCM: An Up-to-Date Introduction into Basics and Applications. Springer, 2008.
- L. F. Cabeza (Ed.), Advances in Thermal Energy Storage Systems. Woodhead Publishing, 2015.
- I. Dincer and M. A. Rosen, Thermal Energy Storage: Systems and Applications, 3rd ed., Wiley, 2021.
- S. A. Kalogirou, Solar Energy Engineering: Processes and Systems, 2nd ed., Academic Press, 2014.
- L. F. Cabeza et al., "Materials used as PCM in thermal energy storage in buildings: A review," Renewable and Sustainable Energy Reviews, 2011.
- F. Kuznik et al., "A review on phase change materials integrated in building walls," Renewable and Sustainable Energy Reviews, 2011.
- D. Zhou, C. Y. Zhao, and Y. Tian, "Review on thermal energy storage with phase change materials (PCMs) in building applications," Applied Energy, 2012.
- A. Sharma et al., "Review on thermal energy storage with phase change materials and applications," Renewable and Sustainable Energy Reviews, 2009.
- T. Ahmad et al., "A comprehensive overview on the data-driven and large-scale approaches for forecasting building energy demand," Energy and Buildings, 2018.
- F. Agyenim et al., "A review of materials, heat transfer and phase change problem formulation for latent heat thermal energy storage systems," Renewable and Sustainable Energy Reviews, 2010.
- B. Zalba et al., "Review on thermal energy storage with phase change materials," Applied Thermal Engineering, 2003.
- A. de Gracia and L. F. Cabeza, "Phase change materials and thermal energy storage for buildings," Energy and Buildings, 2015.
- S. Liu et al., "The Contribution of Artificial Intelligence to Phase Change Materials in Thermal Energy Storage: From Prediction to Optimization," Renewable Energy, 2025.
- H. M. Teamah and M. Teamah, "Phase Change Materials Integration in Building Envelopes Under Different Climatic Conditions," Energy Storage, 2025.
- G. H. Merabet, M. Essaaidi, M. Ben Haddou, B. Qolomany, J. Qadir, M. Anan, A. Al-Fuqaha, M. R. Abid, and D. Benhaddou, "Intelligent Building Control Systems for Thermal Comfort and Energy-Efficiency: A Systematic Review of Artificial Intelligence-Assisted Techniques," Renewable and Sustainable Energy Reviews, vol. 144, Art. no. 110969, Jul. 2021, doi: 10.1016/j.rser.2021.110969.
Subjects
- Engineering & Technology
- https://ioro.org/subjects/engineering-technology