Design of Sustainable Building by Considering Green Materials – Case Study in Salalah Oman
Main Article Content
Abstract
The present study is based on analyzing the sustainable approaches toward adaptation of green building , materials and technology. The implemented standards to reduce resource and energy usage is applied to improve the living standards of people and society. The study is focused on construction industry of Oman and consider fiver case studies from Salalah based on designing green building in Dhofar region. The green building and construction is rated according to standards provided by LEED organization. The study compare the case studies and develop model for sustainable building. The simulation results indicates the improtance of green building in saving energy and resources such as Eco-house.

Article Details

This work is licensed under a Creative Commons Attribution 4.0 International License.
References
Xinzheng, D. R. (2009). Evaluation Analysis on Sustainable Development of Civil Engineering Construction. International Conference on Information Management, Innovation Management and Industrial Engineering, (pp. 219-222). doi:10.1109/ICIII.2009.60
ADEC Innovation. (2022). Retrieved from Advancing sustainability practices areound the world through data: https://www.adec-innovations.com/
Afolabi A. Dania, G. D. (2013). SUSTAINABLE CONSTRUCTION IN NIGERIA: UNDERSTANDING. Sustainable Building Conference. Whiteknights, Reading.
AJAR. (2022). Alilah Hotels. Retrieved from https://www.alilahotels.com/jabalakhdar
Akadiri, P., Chinyio, E., & Olomolaiye, P. (2012). Design of A Sustainable Building: A Conceptual Framework for Implementing Sustainability in the Building Sector. Buildings 2012, 126-152. doi:https://doi.org/10.3390/buildings2020126
Alalouch, C., Al-Saadi, S., Al Waer, H., & Al-Khaled, K. (2019). Energy Saving Potential for Residential Buildings in Hot Climates. Sustainable Cities and Society, 19.
ARNESSON, E. (2019). Analysis of sustainable building materials, their possibilities and challenges. KTH ROYAL INSTITUTE OF TECHNOLOGY SCHOOL OF INDUSTRIAL ENGINEERING AND MANAGEMENT.
Bilec, M. M. (2007). A Hybrid Life Cycle Assessment Model for Construction Processess. Doctoral Dissertation, University of Pittsburgh.
Boverkets. (2018). Retrieved from Boverkets-building-regulations, mandatory-provisions-and-general-recommendations-bbr/: https://www.boverket.se/en/start/publications/publications/2019/boverkets-building-regulations--mandatory-provisions-and-general-recommendations-bbr/
CCC. (n.d.). Consolidated Contractors Company. Retrieved from https://www.ccc.net/
CHM. (n.d.). Grand Hyatt Muscat. Retrieved from https://www.hyatt.com/
Climate One Building Organization. (2021). Retrieved from WMO Region 2 Asia: https://climate.onebuilding.org/WMO_Region_2_Asia/OMN_Oman/index.html
Dair, C. &. (2006). Sustainable Land Reuse: The Influence of Different Stakeholders in Achieving Sustainable Brownfield Developments in England. Environment and Planning A. 38., 1345-1366. doi:10.1068/a37370
Djokoto Susan Dzifa, D. J. (2014). Barriers to Sustainable Construction in the Ghanaian Construction Industry: Consultants Perspectives. Journal of Sustainable Development 7(1).
Enshassi, e.-a. (n.d.). Promoting Green Building by Investigating Sustainability Concepts in Building Projects with Regard to Economic.
EPA. (n.d.). Green Building. Retrieved from EPA GOV: https://archive.epa.gov/greenbuilding/web/html/
ETDEWEB. (2004). Building for the future. (p. 2). U.S. Department of Energy Office of Scientific and Technical Information.
Forms, L. S. (2022). Sample Forms. Retrieved from USGBC: https://www.usgbc.org/sampleforms
Gabrielle Parkhill, R. G. (2020). Mechanical and Aerospace Engineering, The George. MAE 4152W Capstone II, Final Technical Report, The George Washington University , Mechanical and Aerospace Engineering. Retrieved from https://scholarspace.library.gwu.edu/concern/file_sets/2b88qc954
GreenSource. (2008). Emerald Architecture: Case Studies in Green Building (GreenSource): Case Studies in Green Building. McGraw-Hill Education.
Hensel, M. (2010). Performance-oriented Architecture - Towards a Biological Paradigm for Architectural Design and the Built Environment. FORMAkademisk. 3., 36-56.
Hydes, K. a. (2000). Reducing Mechanical Equipment Cost. London. Routledge Lt, 403-407.
Idris, N. &. (2011). Framework policy for sustainable construction in Malaysia. IEEE Symposium on Business, Engineering and Industrial Applications (ISBEIA), 441-446.
IEA. (2021). Global Energy Review 2021. Retrieved from IEA, Paris: https://www.iea.org/reports/global-energy-review-2021
Kats, G. H. (2013). Green Building Costs and Financial Benefits. Boston: Massachusetts Technology Collaborative .
Krarti, K. D. (2007). Energy Productivity: Evaluating LargeScale Building Energy Efficiency Programs in Oman. (p. 8). Riyadh: The King Abdullah Petroleum Studies and Research Center.
Law, J. (2009). A Dictionary of Business and Management (5 ed.). Oxford University Press. doi:10.1093/acref/9780199234899.001.000
Leach, M. J. (2012). Transforming innovation for sustainability. Ecology and Society 17(2), 11.
LEED. (2022). LEED Scorecard. Retrieved from USGBC ORG: https://www.usgbc.org/leed-tools/scorecard
LEEDS-Scores. (n.d.). LEED Scores. Retrieved from USGBC: https://www.usgbc.org/projects
Mageswary Karpudewan *, Z. I.-M. (2012). Ensuring sustainability of tomorrow through green chemistry integrated with sustainable development concepts (SDCs). Chem. Educ. Res. Pract., 13, 120-127.
Malkawi, B. K. (2005). Performative Architecture: Beyond Instrumentality. New York: Spon Press.
Meryman, H. &. (2004). Sustainable Engineering - Using Specifications to Make it Happen. Structural Engineering International. 14., 216-219. doi:10.2749/101686604777963856
Mihalakakou, G. &. (2004). Simulation of the Urban Heat Island Phenomenon in Mediterranean Climates. Pure and Applied Geophysics. 161., 429-451. doi:10.1007/s00024-003-2447-4
Montalvo, A. C. (2017). Modeling and Simulation of Energy Efficiency Measures Related to Passive Solar Building Design.
MOO. (n.d.). Mall of Oman. Retrieved from http://mallofoman.net/
Niu, Y. (2018). Research Progress of Building Materials Used in Construction Land. IOP Conference Series. Materials Science and Engineering., (p. 301).
Rincón, L. &. (2019). Improving thermal comfort of earthen dwellings in sub-Saharan Africa with passive design. Journal of Building Engineering. 24. 100732. doi:10.1016/j.jobe.2019.100732.
Rizqa, E. y. (2016). Promoting Green Building by Investigating Sustainability Concepts in Building Projects with Regard to Economic, Environment, Social, and Technical Goals. Gaza.
Rochester, P. G. (n.d.). About Us. Retrieved from In Site Architecture: www.insitearch.com
Ruggieri, L. &.-B. (2009). Recovery of organic wastes in the Spanish wine industry. Technical, economic and environmental analyses of the composting process. Journal of Cleaner Production - J CLEAN PROD., 17, 830-838. doi:10.1016/j.jclepro.2008.12.005.
Saleh Issa Khsaf, A. A. (2015). Study of Treatment Al-Shamia West Drainage Water to be Used for Drinking Purposes. Engineering and Technology Journal, 47-55.
Shafii, F. &. (2006). Achieving sustainable construction in the developing countries Of Southeast Asia.
Song , Y., & Zhang , H. (2018). Materials Science and Engineering. IOP Conference s, (p. 452).
Stefan Pfenninger, A. H. (2014, May). Energy systems modeling for twenty-first century energy challenges. Renewable and Sustainable Energy Reviews, 33, 74-86.
Subhes, C. B. (2019). Energy Economics. Springer Link.
Technical Building Code. (2006 , March 29). CTE. Spain. Retrieved from https://www.reynalco.com/en/technical-area/what-is-the-technical-building-code-cte-
TRC. (2022). TRC Competetion Page. Retrieved from The Research Council of Oman: https://ecohouse.trc.gov.om//
UNEP-IETC. (2002). Agenda 21 for sustainable construction in developing countries, United Nations Environment Programme International Environmental Technology Centre, UNEP-IETC. Retrieved from http://hdl.handle.net/10204/3511
V41, L. (2022). LEED V4.1. Retrieved from USGBC ORG: https://www.usgbc.org/leed/v41
Wang, H. L.-K.-K. (2014). How well do global climate models simulate the variability of Atlantic tropical cyclones associated with ENSO? J. Climate, 5673--5692. doi:10.1175/JCLI-D-13-00625.1
Wang, N. (2014). Whole Life Project Management Approach to Sustainability. Journal of Management in Engineering, 246-255.
WGBC. (n.d.). Retrieved from World Green Building Council: https://www.worldgbc.org/what-green-building
Why, H. a. (1999). Agenda 21 for Sustainable Construction. pp. 27, 347-353. doi:https://doi.org/10.1080/096132199369174
WMO Region 2. (2021). Retrieved from Climate One Building Organization: https://climate.onebuilding.org/WMO_Region_2_Asia/OMN_Oman/ZU_Dhofar
Ying Chen, G. E. (2010). Decision support for construction method selection in concrete buildings: Prefabrication adoption and optimization. Automation in Construction, 665-675. doi:10.1016/j.autcon.2010.02.011
Zhang, Y., Kang, J., & Jin, H. (2018). A Review of Green Building Development in China from the Perspective of Energy Saving. Energies, 11,334. doi:https://doi.org/10.3390/en11020334
Zhi Liu, Y. R. (2020). Analysis on the effectiveness of indicators for evaluating urban carrying capacity: A popularity-suitability perspective. Journal of Cleaner Production, 246. doi:doi.org/10.1016/j.jclepro.2019.119019