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Research Article

Impact of the new Saudi energy conservation code on Saudi Arabia residential buildings

, &
Pages 1392-1406 | Received 28 Apr 2020, Accepted 26 Jul 2020, Published online: 28 Aug 2020

References

  • Abbood, A. W., K. M. Al-Obaidi, H. Awang, A. M. Abdul Rahman. 2015. “Achieving Energy Efficiency through Industrialized Building System for Residential Buildings in Iraq.” International Journal of Sustainable Built Environment 4 (1): 78–90. doi: 10.1016/j.ijsbe.2015.02.002.
  • Ahmad, A. 2004. “Energy Simulation for a Typical House Built with Different Types of Masonry Building Materials.” Arabian Journal for Science and Engineering 29 (2B): 113–126.
  • Ahmed, W., M. Asif, and F. Alrashed. 2019. “Application of Building Performance Simulation to Design Energy-Efficient Homes: Case Study from Saudi Arabia.” Sustainability 11 (21): 6048. doi: 10.3390/su11216048.
  • Alaidroos, A., and M. Krarti. 2015. “Optimal Design of Residential Building Envelope Systems in the Kingdom of Saudi Arabia.” Energy and Buildings 86: 104–117. doi: 10.1016/j.enbuild.2014.09.083.
  • Alalouch, C., S. Al-Saadi, H. AlWaer, K. Al-Khaled. 2019. “Energy Saving Potential for Residential Buildings in Hot Climates: The Case of Oman.” Sustainable Cities and Society 46: 101442. doi: 10.1016/j.scs.2019.101442.
  • Al-Badi, A., and S. Al-Saadi. 2019. “Toward Energy-efficient Buildings in Oman.” International Journal of Sustainable Energy 29 (5): 1–22.
  • Aldossary, N. A., Y. Rezgui, and A. Kwan. 2014. “Domestic Energy Consumption Patterns in A Hot and Arid Climate: A Multiple-case Study Analysis.” Renewable Energy 62: 369–378. doi: 10.1016/j.renene.2013.07.042.
  • Aldossary, N. A., Y. Rezgui, and A. Kwan. 2017. “Establishing Domestic Low Energy Consumption Reference Levels for Saudi Arabiaand the Wider Middle Eastern Region.” Sustainable Cities and Society 28: 265–276. doi: 10.1016/j.scs.2016.09.015.
  • AlFaraidy, F., and S. Azzam. 2019. “Residential Buildings Thermal Performance to Comply with the Energy Conservation Code of Saudi Arabia.” Engineering, Technology & Applied Science Research 9 (2): 3949–3954.
  • Almasri, R. A., A. F. Almarshoud, H. M. Omar, K. K. Esmaeil, and M. Alshitawi. 2020. “Exergy and Economic Analysis of Energy Consumption in the Residential Sector of the Qassim Region in the Kingdom of Saudi Arabia.” Sustainability 12 (7): 2606.
  • Alrashed, F., and M. Asif. 2015. “Analysis of Critical Climate Related Factors for the Application of Zero-energy Homes in Saudi Arabia.” Renewable and Sustainable Energy Reviews 41: 1395–1403. doi: 10.1016/j.rser.2014.09.031.
  • Alrashed, F., and M. Asif. 2014. “Trends in Residential Energy Consumption in Saudi Arabiawith Particular Reference to the Eastern Province.” Journal of Sustainable Development of Energy, Water and Environment Systems 2 (4): 376–387. doi: 10.13044/j.sdewes.2014.02.0030.
  • Alshahrani, J., and P. Boait. 2019. “Reducing High Energy Demand Associated with Air-Conditioning Needs in Saudi Arabia.” Energies 12 (1): 87. doi: 10.3390/en12010087.
  • Alshamrani, O. S., M. Abdul Mujeebu, N. Ashraf, A. Al-Ghonamy, M. Aichouni. 2017. “Selection of External Wall Material by LCC Technique for Ofice-cum-Commercial Building in the Eastern Province of Saudi Arabia.” Journal Architecture & Planning 29 (2): 243–256.
  • “Annual Statistical Booklet for Electricity and Seawater Desalination Industries.” 2018. p. 164. https://www.ecra.gov.sa/en-us/MediaCenter/doclib2/Pages/SubCategoryList.aspx?categoryID=5
  • Atmaca, A. 2016. “Life-cycle Assessment and Cost Analysis of Residential Buildings in South East of Turkey: Part 2—a Case Study.” The International Journal of Life Cycle Assessment 21 (7): 925–942. doi: 10.1007/s11367-016-1051-7.
  • Basrawi, F., H. Ibrahim, M. Y. Taib, G. C. Lee. 2013. “Optimum Thickness of Wall Insulations and Their Thermal Performance for Buildings in Malaysian Climate.” International Journal of Automotive and Mechanical Engineering 8: 1207. doi: 10.15282/ijame.8.2013.11.0099.
  • Carpino, C., D. Mora, and M. De Simone. 2019. “On the Use of Questionnaire in Residential Buildings. A Review of Collected Data, Methodologies and Objectives.” Energy and Buildings 186: 297–318. doi: 10.1016/j.enbuild.2018.12.021.
  • Dombayci, Ö. A., Ö. Atalay, Ş. Güven Acar, E. Yilmaz Ulu, H. Kemal Ozturk. 2017. “Thermoeconomic Method for Determination of Optimum Insulation Thickness of External Walls for the Houses: Case Study for Turkey.” Sustainable Energy Technologies and Assessments 22: 1–8. doi: 10.1016/j.seta.2017.05.005.
  • “Electricity Emissions Around the World.” June 19, 2020. http://shrinkthatfootprint.com/electricity-emissions-around-the-world
  • Esmaeil, K. K., M. S. Alshitawi, and R. A. Almasri. 2019. “Analysis of Energy Consumption Pattern in Saudi Arabia’s Residential Buildings with Specific Reference to Qassim Region.” Energy Efficiency 12: 1–23.
  • Felimban, A., A. Prieto, U. Knaack, T. Klein, Y. Qaffas. 2019. “Assessment of Current Energy Consumption in Residential Buildings in Jeddah, Saudi Arabia.” Buildings 9 (7): 163. doi: 10.3390/buildings9070163.
  • Friess, W. A., and K. Rakhshan. 2017. “A Review of Passive Envelope Measures for Improved Building Energy Efficiency in the UAE.” Renewable and Sustainable Energy Reviews 72: 485–496. doi:10.1016/j.rser.2017.01.026.
  • Guglielmetti, R., D. Macumber, and N. Long. 2011. OpenStudio: An Open Source Integrated Analysis Platform. Golden, CO: National Renewable Energy Lab. (NREL).
  • Guo, Z., H. Moayedi, L. K. Foong, M. Bahiraei. 2020. “Optimal Modification of Heating, Ventilation, and Air Conditioning System Performances in Residential Buildings Using the Integration of Metaheuristic Optimization and Neural Computing.” Energy and Buildings 214: 109866. doi: 10.1016/j.enbuild.2020.109866.
  • Khabaz, A. 2018. “Construction and Design Requirements of Green Buildings’ Roofs in Saudi Arabiadepending on Thermal Conductivity Principle.” Construction and Building Materials 186: 1119–1131. doi: 10.1016/j.conbuildmat.2018.07.234.
  • Kon, O. 2017. “Determination of Optimum Insulation Thicknesses Using Economical Analyse for Exterior Walls of Buildings with Different Masses.” An International Journal of Optimization and Control: Theories & Applications (IJOCTA) 7 (2): 149–157.
  • Krarti, M., K. Dubey, and N. Howarth. 2017. “Evaluation of Building Energy Efficiency Investment Options for the Kingdom of Saudi Arabia.” Energy 134: 595–610. doi: 10.1016/j.energy.2017.05.084.
  • Matar, W. 2016. “Beyond the End-consumer: How Would Improvements in Residential Energy Efficiency Affect the Power Sector in Saudi Arabia?” Energy Efficiency 9 (3): 771–790. doi: 10.1007/s12053-015-9392-9.
  • Meyer, R., and D. Krueger. 2001. Minitab Guide to Statistics. Upper Saddle River, NJ: Prentice Hall PTR.
  • Nurunnabi, M. 2017. “Transformation from an Oil-based Economy to a Knowledge-based Economy in Saudi Arabia: The Direction of Saudi Vision 2030.” Journal of the Knowledge Economy 8 (2): 536–564. doi: 10.1007/s13132-017-0479-8.
  • Orosa, J. A., and A. C. Oliveira. 2011. “Software Tools for HVAC Research.” Advances in Engineering Software 42 (10): 846–851. doi: 10.1016/j.advengsoft.2011.05.028.
  • “Population, Total.” 2018. Accessed May 29 2020. https://data.worldbank.org/indicator/SP.POP.TOTL2018
  • Rey, F., E. Velasco, and F. Varela. 2007. “Building Energy Analysis (BEA): A Methodology to Assess Building Energy Labelling.” Energy and Buildings 39 (6): 709–716. doi: 10.1016/j.enbuild.2006.07.009.
  • Sabouri, S., M. F. M. Zain, and M. Jamil. 2011. “Exploring Role of Different Floor, Wall and Roof Details in Energy Efficiency of a Bungalow House in Malaysia.” Scientific Research and Essays 6 (30): 6331–6345.
  • Sadeghifam, A. N., S. M. Zahraee, M. M. Meynagh, I. Kiani. 2015. “Combined Use of Design of Experiment and Dynamic Building Simulation in Assessment of Energy Efficiency in Tropical Residential Buildings.” Energy and Buildings 86: 525–533. doi: 10.1016/j.enbuild.2014.10.052.
  • “Saudi Arabiabalance, IEA.” 2020. Accessed May 28 2020. https://www.iea.org/sankey/#?c=Saudi%20Arabia&s=Balance
  • Saudi Building Energy Conservation Code-Residential SBC 602. 2018. Riyadh, Saudi Arabia: Saudi Building Code National Committee. p. 64. https://www.sbc.gov.sa/En/BuildingCode/Pages/SBC_602E.aspx
  • Secretariat, E. C. 2000. “Energy Charter Protocol on Energy Efficiency and Related Environmental Aspects (PEEREA).” Depth Review of Energy Efficiency Policies and Programmes of Lithuania, Brussels.
  • Taleb, H. M., and S. Sharples. 2011. “Developing Sustainable Residential Buildings in Saudi Arabia: A Case Study.” Applied Energy 88 (1): 383–391. doi: 10.1016/j.apenergy.2010.07.029.
  • “United States Environmental Protection Agency,Energy and the Environment.” 2020. https://www.epa.gov/energy/greenhouse-gas-equivalencies-calculator
  • Ürge-Vorsatz, D., L. F. Cabeza, S. Serrano, C. Barreneche, K. Petrichenko. 2015. “Heating and Cooling Energy Trends and Drivers in Buildings.” Renewable and Sustainable Energy Reviews 41: 85–98. doi: 10.1016/j.rser.2014.08.039.
  • Wahl, E. 2017. Buildings in Arid Desert Climate: Improving Energy Efficiency with Measures on the Building Envelope. Luleå, Sweden: Luleå University of Technology.
  • Wall, M. 2006. “Energy-efficient Terrace Houses in Sweden: Simulations and Measurements.” Energy and Buildings 38 (6): 627–634. doi: 10.1016/j.enbuild.2005.10.005.
  • Wood, M., and O. A. Alsayegh. 2014. “Impact of Oil Prices, Economic Diversification Policies and Energy Conservation Programs on the Electricity and Water Demands in Kuwait.” Energy Policy 66: 144–156. doi: 10.1016/j.enpol.2013.10.061.
  • Yousefi, F., Y. Gholipour, and W. Yan. 2017. “A Study of the Impact of Occupant Behaviors on Energy Performance of Building Envelopes Using Occupants’ Data.” Energy and Buildings 148: 182–198. doi: 10.1016/j.enbuild.2017.04.085.
  • Zhou, G., H. Moayedi, M. Bahiraei, Z. Lyu. 2020. “Employing Artificial Bee Colony and Particle Swarm Techniques for Optimizing a Neural Network in Prediction of Heating and Cooling Loads of Residential Buildings.” Journal of Cleaner Production 254: 120082. doi: 10.1016/j.jclepro.2020.120082.

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