Review Article
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Year 2024, Volume: 6 Issue: 2, 383 - 395, 20.12.2024
https://doi.org/10.46474/jds.1556305

Abstract

References

  • D. Zhou, C. Y. (2012). Review on Thermal Energy Storage with Phase Change Materials (PCMs) in Building applications. Applied Energy, vol. 22, pp. - 065 523, .2612.
  • Farid M. M., K. A.-H. (2004). A Review on Phase Change Energy Storage: Materials and Applications. Energy Conversion and Management, pp. 1597-1615.
  • Hawes, D. W. (1993). Latent Heat Storage in Building Materials. Energy and Buildings, 20, no. 1: 77-86.
  • Hui, S. C. (2009). Final Report Study of Thermal and Energy Performance of Green Roof Systems.
  • IP, K. (1998). Solar Thermal Storage with Phase Change Materials in Domestic Buildings. CIB World Congress. Gävle, Sweden, pp. 1265-1272.
  • Liu, T. L.-S. (2022). Sustainability Considerations of Green Buildings: A Detailed Overview on Current Advancements and Future Considerations. Sustainability, 14, no. 21.
  • Lotfabadi, P. a. ( (2019). A Comparative Study of Traditional and Contemporary Building Envelope Construction Techniques in Terms of Thermal Comfort and Energy Efficiency in Hot and Humid Climates. Sustainability , 11, no. 13: 3582.
  • Mondal, S. (2008). Phase Change Materials for Smart Textiles – an Overview. Applied Thermal Engineering, V.28 , N. 11-12, P. 1536-1550.
  • Pardo, J. M. (2023). Challenges and Current Research Trends for Vernacular Architecture in a Global World: A Literature Review. Buildings, 13, no. 1: 162.
  • Rathore, P. K. (2022). Thermal Performance of the Building Envelope Integrated with Phase Change Material for Thermal Energy Storage: an Updated Review. Sustainable Cities and Society, 79, 103690.
  • Sánchez-García, D. a.-H. (2023). Energy Implications of Thermal Comfort in Buildings Considering Climate Change. Applied Sciences, no. 19 : 10708.
  • Vagtholm, R. A. (2023). Evolution and Current State of Building Materials, Construction Methods, and Building Regulations in the UK: Implications for Sustainable Building Practices. Buildings, 13, no. 6: 1480.
  • Zalba B., Marin J. M., Cabeza, L,F., Mehling, H., (2003). Review on Thermal Energy Storage with Phase Change Materials, Heat Transfer Analysis and Applications, Applied Thermal Engineering. 23 (3), pp. 251 -283.

Smart Materials in Green Architecture: The Role of ETFE and Phase Change Materials in Sustainable Building Design

Year 2024, Volume: 6 Issue: 2, 383 - 395, 20.12.2024
https://doi.org/10.46474/jds.1556305

Abstract

Given the importance of energy in achieving environmental sustainability in green buildings, one of the most significant solutions is to reduce physical building consumption and instead use renewable energy to prevent the depletion of natural resources and environmental pollution. Utilizing advanced technologies and intelligent systems in architecture is one of the methods that can achieve energy management in buildings and ensure comfortable conditions for the occupants of green buildings.
In the field of future-oriented architecture, it is expected that in the future, materials and technologies developed over the past century will define the different challenges ahead to elevate sustainable development in the building industry. Using solar energy, one of the latest innovations in buildings, and other measures such as ETFE panels (a green roof idea with an intelligent system) and thermochromic materials, which change color to minimize heat exchange between interior and exterior spaces of the building, show that today's world faces energy crises. The use of smart materials tailored to environmental conditions can significantly impact building design and have beneficial effects in terms of compatibility with the environment, increased lifespan of materials, and the adaptability of materials to changing weather conditions, thus aiding in achieving sustainable architecture.
Therefore, this article aims to introduce intelligent materials and their applications and benefits in green building architecture based on library studies. The primary goal is to identify and highlight the most crucial aspects of using intelligent materials and their performance in buildings and how these materials behave and perform in architectural designs. The best way to leverage the benefits of these smart energy-saving materials and management for achieving sustainable architecture will be discussed.

References

  • D. Zhou, C. Y. (2012). Review on Thermal Energy Storage with Phase Change Materials (PCMs) in Building applications. Applied Energy, vol. 22, pp. - 065 523, .2612.
  • Farid M. M., K. A.-H. (2004). A Review on Phase Change Energy Storage: Materials and Applications. Energy Conversion and Management, pp. 1597-1615.
  • Hawes, D. W. (1993). Latent Heat Storage in Building Materials. Energy and Buildings, 20, no. 1: 77-86.
  • Hui, S. C. (2009). Final Report Study of Thermal and Energy Performance of Green Roof Systems.
  • IP, K. (1998). Solar Thermal Storage with Phase Change Materials in Domestic Buildings. CIB World Congress. Gävle, Sweden, pp. 1265-1272.
  • Liu, T. L.-S. (2022). Sustainability Considerations of Green Buildings: A Detailed Overview on Current Advancements and Future Considerations. Sustainability, 14, no. 21.
  • Lotfabadi, P. a. ( (2019). A Comparative Study of Traditional and Contemporary Building Envelope Construction Techniques in Terms of Thermal Comfort and Energy Efficiency in Hot and Humid Climates. Sustainability , 11, no. 13: 3582.
  • Mondal, S. (2008). Phase Change Materials for Smart Textiles – an Overview. Applied Thermal Engineering, V.28 , N. 11-12, P. 1536-1550.
  • Pardo, J. M. (2023). Challenges and Current Research Trends for Vernacular Architecture in a Global World: A Literature Review. Buildings, 13, no. 1: 162.
  • Rathore, P. K. (2022). Thermal Performance of the Building Envelope Integrated with Phase Change Material for Thermal Energy Storage: an Updated Review. Sustainable Cities and Society, 79, 103690.
  • Sánchez-García, D. a.-H. (2023). Energy Implications of Thermal Comfort in Buildings Considering Climate Change. Applied Sciences, no. 19 : 10708.
  • Vagtholm, R. A. (2023). Evolution and Current State of Building Materials, Construction Methods, and Building Regulations in the UK: Implications for Sustainable Building Practices. Buildings, 13, no. 6: 1480.
  • Zalba B., Marin J. M., Cabeza, L,F., Mehling, H., (2003). Review on Thermal Energy Storage with Phase Change Materials, Heat Transfer Analysis and Applications, Applied Thermal Engineering. 23 (3), pp. 251 -283.
There are 13 citations in total.

Details

Primary Language English
Subjects Interior Architecture
Journal Section Review
Authors

Seyedehzahra Shafa 0009-0004-9683-4882

Early Pub Date December 13, 2024
Publication Date December 20, 2024
Submission Date September 26, 2024
Acceptance Date October 18, 2024
Published in Issue Year 2024 Volume: 6 Issue: 2

Cite

APA Shafa, S. (2024). Smart Materials in Green Architecture: The Role of ETFE and Phase Change Materials in Sustainable Building Design. Journal of Design Studio, 6(2), 383-395. https://doi.org/10.46474/jds.1556305

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