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A review of underground building towards thermal energy efficiency and sustainable development

Author

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  • Alkaff, Saqaff A.
  • Sim, S.C.
  • Ervina Efzan, M.N.

Abstract

Global warming has posed a great challenge to the survival of mankind. The increasing atmospheric concentration of carbon dioxide is widely recognized as the largest contributor of global warming. Hence, world-wide attention towards energy conservation has grown markedly to reduce the carbon dioxide emission. In the context of building energy performance, the ancient wisdom of using the earth as temperature moderator against harsh weather has impressive potential to become a solid solution against the energy inefficiency of Heating, Ventilation, and Air Conditioning system (HVAC) in building. This creative and traditional passive cooling technique has been also made it possible to achieve most criteria of sustainable development concerning the world׳s growing housing demand, climate change, fossil-fuel depletion as well as limited land area and resources.

Suggested Citation

  • Alkaff, Saqaff A. & Sim, S.C. & Ervina Efzan, M.N., 2016. "A review of underground building towards thermal energy efficiency and sustainable development," Renewable and Sustainable Energy Reviews, Elsevier, vol. 60(C), pages 692-713.
  • Handle: RePEc:eee:rensus:v:60:y:2016:i:c:p:692-713
    DOI: 10.1016/j.rser.2015.12.085
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    References listed on IDEAS

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    1. Akubue Jideofor Anselm, 2012. "Earth Shelters; A Review of Energy Conservation Properties in Earth Sheltered Housing," Chapters, in: Azni Zain Ahmed (ed.), Energy Conservation, IntechOpen.
    2. Bruno Gagnon & Roland Leduc & Luc Savard, 2008. "Sustainable development in engineering: a review of principles and definition of a conceptual framework," Cahiers de recherche 08-18, Departement d'économique de l'École de gestion à l'Université de Sherbrooke.
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    Cited by:

    1. Zhou, Kai & Leng, Jia-Wei, 2023. "State-of-the-art research of performance-driven architectural design for low-carbon urban underground space: Systematic review and proposed design strategies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 182(C).
    2. Goudarzi, Hossein & Mostafaeipour, Ali, 2017. "Energy saving evaluation of passive systems for residential buildings in hot and dry regions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 68(P1), pages 432-446.
    3. Seyed Morteza Hatefi & Jolanta Tamošaitienė, 2018. "Construction Projects Assessment Based on the Sustainable Development Criteria by an Integrated Fuzzy AHP and Improved GRA Model," Sustainability, MDPI, vol. 10(4), pages 1-14, March.
    4. Teguh Hady Ariwibowo & Akio Miyara, 2020. "Thermal Characteristics of Slinky-Coil Ground Heat Exchanger with Discrete Double Inclined Ribs," Resources, MDPI, vol. 9(9), pages 1-17, August.
    5. Cristina Baglivo & Paolo Maria Congedo & Delia D’Agostino, 2018. "Multi-Objective Analysis for the Optimization of a High Performance Slab-on- Ground Floor in a Warm Climate," Energies, MDPI, vol. 11(11), pages 1-28, November.
    6. Cui, Yuanlong & Zhu, Jie & Twaha, Ssennoga & Riffat, Saffa, 2018. "A comprehensive review on 2D and 3D models of vertical ground heat exchangers," Renewable and Sustainable Energy Reviews, Elsevier, vol. 94(C), pages 84-114.
    7. Mohammad Valipour & Abdelkader T. Ahmed & Georgios P. Antoniou & Renato Sala & Mario Parise & Miquel Salgot & Negar Sanaan Bensi & Andreas N. Angelakis, 2020. "Sustainability of Underground Hydro-Technologies: From Ancient to Modern Times and toward the Future," Sustainability, MDPI, vol. 12(21), pages 1-31, October.

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