370
Views
0
CrossRef citations to date
0
Altmetric
Article

Simulation-based evaluation of low carbon design strategies for extreme climates

&
Pages 191-204 | Received 13 Mar 2023, Accepted 03 Jan 2024, Published online: 19 Feb 2024

References

  • Allbury, K., and J. Anderson. 2011. “Environmental Impact of Insulation.” BRE.
  • Ascione, Fabrizio, Nicola Bianco, Filippo de Rossi, Gianluca Turni, and Giuseppe Peter Vanoli. 2013. “Green Roofs in European Climates. Are Effective Solutions for the Energy Savings in Air-Conditioning?” Applied Energy 104: 845–859. doi:10.1016/j.apenergy.2012.11.068.
  • ASHRAE. 2021. “ASHRAE Fundamentals.”
  • Baetens, Ruben, Bjørn Petter Jelle, and Arild Gustavsen. 2010. “Phase Change Materials for Building Applications: A State-of-the-Art Review.” Energy and Buildings 42 (9): 1361–1368. doi:10.1016/j.enbuild.2010.03.026.
  • Beck, Hylke E., Niklaus E. Zimmermann, Tim R. McVicar, Noemi Vergopolan, Alexis Berg, and Eric F. Wood. 2020. “Present and Future Koppen-Geiger Climate Classification Maps at 1-Km Resolution (Vol 5, 180214, 2018).” Scientific Data 7 (1). doi:10.1038/s41597-020-00616-w.
  • BEIS. 2021. “Operational Ratings for Commercial and Industrial Buildings Have Been Proposed by Government under the 2021 Consultation Introducing a Performance-Based Policy Framework in Large Commercial and Industrial Buildings.” BEIS. Bussiness, Energy & Industrial Strategy. https://www.gov.uk/government/consultations/introducing-a-performance-based-policy-framework-in-large-commercial-and-industrial-buildings.
  • Brager, Gail, and Lindsay Baker. 2009. “Occupant Satisfaction in Mixed-Mode Buildings.” Building Research and Information : The International Journal of Research, Development and Demonstration 37 (4): 369–380. doi:10.1080/09613210902899785.
  • Cabeza, L. F., A. Castell, and G. Pérez. 2014. “Pérez,13 - Life Cycle Assessment (LCA) of Phase Change Materials (PCMs) Used in Buildings.” In Eco-efficient Construction and Building Materials, edited by F. Pacheco-Torgal, L. F. Cabeza, J. Labrincha, and A. de Magalhães, 287–310. Woodhead Publishing.
  • CIBSE. 2014. Buildings for Extreme Environments: Arid. London: CIBSE.
  • CIBSE. 2017a. Buildings for Extreme Environments: Cold Climates. London: CIBSE.
  • CIBSE. 2017b. Buildings for Extreme Environments: Tropical. London: CIBSE.
  • Domingos, L., and V. Rato. 2019. “Multi-Criteria Material Selection for Buildings in Challenging Environments.” IOP Conference Series. Earth and Environmental Science 297 (1): 012038. doi:10.1088/1755-1315/297/1/012038.
  • Elouadjeri, Sahar Magri, Aicha Boussoualim, and Hassan Ait Haddou. 2021. “Evaluating the Effect of External Horizontal Fixed Shading Devices Geometry on Internal Air Temperature, Daylighting and Energy Demand in Hot Dry Climate. Case Study of Ghardaïa, Algeria.” Buildings 11 (8). doi:10.3390/buildings11080348.
  • EnergyPlus, and World Meteorological Organization. 2022. “Weather Data.”
  • Fang, Xia, Jon Winkler, and Dane Christensen. 2010. “Using EnergyPlus to Perform Dehumidification Analysis on Building America Homes.”
  • Feldman, D., D. Banu, D. Hawes, and E. Ghanbari. 1991. “Obtaining an Energy Storing Building Material by Direct Incorporation of an Organic Phase Change Material in Gypsum Wallboard.” Solar Energy Materials 22 (2-3): 231–242. doi:10.1016/0165-1633(91)90021-C.
  • Gething, Bill, and Technology Strategy Board. 2010. “Design for Future Climate.” www.ukcip.org.uk.
  • Grullón – Penkova, Iana F, Jess K Zimmerman, and Grizelle González. 2020. “Green Roofs in the Tropics: Design Considerations and Vegetation Dynamics.” Heliyon 6 (8): e04712–e04712. doi:10.1016/j.heliyon.2020.e04712.
  • IEA. 2013. “Transition to Sustainable Buildings: Strategies and Opportunities to 2050.” https://www.iea.org/media/training/presentations/etw2014/publications/ Sustainable_Buildings_2013.pdf.
  • International Energy Agency. 2018. “The Future of Cooling: Opportunities for Energy. Efficient Air Conditioning.” IEA.
  • Jamei, Elmira, Hing Wah Chau, Mehdi Seyedmahmoudian, and Alex Stojcevski. 2021. “Review on the Cooling Potential of Green Roofs in Different Climates.” The Science of the Total Environment 791: 148407–148407. doi:10.1016/j.scitotenv.2021.148407.
  • Kim, Taehoon, Yong-woo Kim, and Hunhee Cho. 2020. “Dynamic Production Scheduling Model Under Due Date Uncertainty in Precast Concrete Construction.” Journal of Cleaner Production 257: 120527. doi:10.1016/j.jclepro.2020.120527.
  • Kon, O., and I. Caner. 2020. “Minimum Insulation Thickness to Prevent the Condensation of Building Outdoor Walls in a Different Direction.” In 12th International Exergy, Energy and Environment Symposium. https://www.researchgate.net/publication/347985035.
  • Lavafpour, Y., and S. Sharples. 2015. “Summer Thermal Comfort and Self-Shading Geometries in Passivhaus Dwellings: A Pilot Study Using Future UK Climates.” Buildings (Basel) 5 (3): 964–984. https://doi.org/10.3390/buildings5030964.
  • Livesey, Katie, Ed Suttie, and Katherine Scovell. 2013. “Advanced Thermal Insulation Technologies in the Built Environment.” www.architecture.com.
  • Martin-Escudero, Koldobika, Garazi Atxalandabaso, Aitor Erkoreka, Amaia Uriarte, and Matteo Porta. 2022. “Comparison Between Energy Simulation and Monitoring Data in an Office Building.” Energies 15 (1). doi:10.3390/en15010239.
  • Murray Milne, R. Liggett, and Rashed Alshaali. 2016. “Climate Consultant 3.0: A Tool for Visualizing Building Energy Implications of Climates.”
  • Nazi, Wan Iman Wan Mohd, Yaodong Wang, Haisheng Chen, Xinjing Zhang, and Anthony Paul Roskilly. 2017. “Passive Cooling Using Phase Change Material and Insulation for High-Rise Office Building in Tropical Climate.” Energy Procedia 142: 2295–2302. doi:10.1016/j.egypro.2017.12.632.
  • Nematchoua, M. K., J. C. V. Noelson, I. Saadi, H. Kenfack, A.-Z. F. R. Andrianaharinjaka, D. F. Ngoumdoum, J. B. Sela, and S. Reiter. 2020. “Application of Phase Change Materials, Thermal Insulation, and External Shading for Thermal Comfort Improvement and Cooling Energy Demand Reduction in an Office Building Under Different Coastal Tropical Climates.” Solar Energy 207: 458–470. https://doi.org/10.1016/j.solener.2020.06.110.
  • Osanyintola, Olalekan F, and Carey J Simonson. 2006. “Moisture Buffering Capacity of Hygroscopic Building Materials: Experimental Facilities and Energy Impact.” Energy and Buildings 38 (10): 1270–1282. doi:10.1016/j.enbuild.2006.03.026.
  • Sajjadian, Seyed Masoud, John Lewis, and Stephen Sharples. 2015. “The Potential of Phase Change Materials to Reduce Domestic Cooling Energy Loads for Current and Future UK Climates.” Energy and Buildings 93: 83–89. doi:10.1016/j.enbuild.2015.02.029.
  • Schrot, O. G., J. Traxler, A. Weifner, and M. M. Kretzer. 2021. “Potential of “Future Workshop” Method for Educating Adolescents About Climate Change Mitigation and Adaptation: A Case from Freistadt, Upper Austria.” Applied Environmental Education & Communication 20 (3). https://doi.org/10.1080/1533015X.2020.1816515
  • Touma, Albert al, and Djamel Ouahrani. 2017. “Shading and Day-Lighting Controls Energy Savings in Offices with Fully-Glazed Façades in Hot Climates.” Energy and Buildings 151: 263–274. doi:10.1016/j.enbuild.2017.06.058.
  • Tu, Rang, Jiaqi Li, and Yunho Hwang. 2020. “Performance Analysis of Desiccant Wheels Assisted Fresh Air Humidifiers in Winter Using Natural Gas Boilers: Applied in Cold and Dry Climate Regions.” International Journal of Refrigeration 119: 24–36. doi:10.1016/j.ijrefrig.2020.08.003.
  • Velasco, E., and M. Roth. 2010. “Cities as Net Sources of CO2: Review of Atmospheric CO2 Exchange in Urban Environments Measured by Eddy Covariance Technique.” Geography Compass 4 (9): 1238–1259. doi:10.1111/j.1749-8198.2010.00384.x.
  • Veldscholte, Lars B, Rens J Horst, and Sissi de Beer. 2021. “Design, Construction, and Testing of an Accurate Low-Cost Humidistat for Laboratory-Scale Applications.” The European Physical Journal E, Soft Matter and Biological Physics 44 (4): 48–48. doi:10.1140/epje/s10189-021-00062-5.
  • Wanas, A., S. Shafik, A. Farghal, and R. El-Dabaa. 2015. “Use of Kinetic Facades to Enhance Daylight Performance in Office Buildings with Emphasis on Egypt Climates.”
  • WGBC. 2019. “Bringing Embodied Carbon Upfront.” www.worldgbc.org/embodied-carbon.
  • WGBC. 2021. “The Net Zero Carbon Buildings Commitment.” www.Worldgbc.Org/Thecommitment.
  • Wong, Nyuk Hien, Su Fen Tay, Raymond Wong, Chui Leng Ong, and Angelia Sia. 2003. “Life cycle cost analysis of rooftop gardens in Singapore.” Building and Environment 38 (3): 499–509. http://doi.org/10.1016/S0360-1323(02)00131-2.