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BibTex RIS Kaynak Göster
Yıl 2021, Cilt: 3 Sayı: 2, 82 - 96, 24.08.2021
https://doi.org/10.38058/ijsl.893931

Öz

Kaynakça

  • Ahmad, T., Thaheem, M. J. 2018. Economic sustainability assessment of residential buildings: A dedicated assessment framework and implications for BIM, Sustainable Cities and Society, 38: 476-491.
  • Al-Qawasmi, J., Asif, M., El Fattah, A. A., Babsail, M. O. 2019. Water efficiency and management in sustainable building rating systems: Examining variation in criteria usage, Sustainability, 11(8): 2416.
  • Al-Qawasmi, J., 2019. Examining indicators coverage in a sample of sustainable building assessment systems. Architectural Engineering and Design Management, 15(2): 101-120.
  • Al-Sakkaf, A., Zayed, T., Bagchi, A. 2020. A sustainability based framework for evaluating the heritage buildings. International Journal of Energy Optimization and Engineering (IJEOE), 9(2): 49-73.
  • Atanda, J. O., Öztürk, A., 2020. Social criteria of sustainable development in relation to green building assessment tools, Environment, Development and Sustainability, 22(1): 61-87.
  • Berardi, U., 2012. Sustainability assessment in the construction sector: rating systems and rated buildings, Sustainable Development, 20(6): 411-424.
  • Bernardi, E., Carlucci, S., Cornaro, C., Bohne, R. A. 2017. An analysis of the most adopted rating systems for assessing the environmental impact of buildings, Sustainability, 9(7): 1226.
  • Bouwer, M., De Jong, K., Jonk, M., Berman, T., Bersani, R. et al. 2005. Green Public Procurement In Europe 2005–Status Overview, Virage Milieu & Management By, Haarlem, The Netherlands.
  • Braulio-Gonzalo, M., Bovea, M. D. 2020. Relationship between green public procurement criteria and sustainability assessment tools applied to office buildings, Environmental Impact Assessment Review, 81: 106310.
  • Calquin, D. A. L. 2017. August. Automated building data exchange between BIM and BPS supporting building environmental assessment methods (BEAM). In Proceedings of the 15th IBPSA Conference San Francisco, CA, USA. pp. 1329-1333.
  • Carvalho, J. P., Bragança, L., Mateus, R. 2019. Optimising building sustainability assessment using BIM, Automation in Construction, 102: 170-182.
  • Cole, R. J. 1998. Emerging trends in building environmental assessment methods, Building Research & Information, 26: 3-16.
  • Grace, M. 2000. Breeam-A practical method for assessing the sustainability of buildings for the new millennium. Proceedings: International Conference Sustainable Building 2000: 22-25.
  • Haapio, A., Viitaniemi, P. 2008. A critical review of building environmental assessment tools, Environmental Impact Assessment Review, 28: 469-482.
  • Haapio, A., 2012. Towards sustainable urban communities, Environmental Impact Assessment Review, 32(1): 165-169.
  • Hui, E. C., Tse, C. K., Yu, K. H. 2017. The effect of BEAM Plus certification on property price in Hong Kong. International Journal of Strategic Property Management, 21(4): 384-400.
  • Ilhan, B., Yaman, H. 2016. Green building assessment tool (GBAT) for integrated BIM-based design decisions, Automation in Construction, 70: 26-37.
  • Jacobs. 2017. Seminar delivered by the company to ea students in the school of geography, The University Of Leeds, 25 April 2017.
  • Kajikawa, Y., Inoue, T., Goh, T. N. 2011. Analysis of building environment assessment frameworks and their implications for sustainability indicators, Sustainability Science, 6: 233-246.
  • Karaca, F., Guney, M., Kumisbek, A., Kaskina, D. and Tokbolat, S. 2020. A new stakeholder opinion-based rapid sustainability assessment method (RSAM) for existing residential buildings, Sustainable Cities and Society, 60: 102-155.
  • Kawakubo, S., Murakami, S., Ikaga, T. and Asami, Y. 2018. Sustainability assessment of cities: SDGs and GHG emissions, Building Research & Information, 46(5): 528-539.
  • Lee, W. 2013. A comprehensive review of metrics of building environmental assessment schemes, Energy And Buildings, 62: 403-413.
  • Li, Y., Chen, X., Wang, X., Xu, Y. and Chen, P.H. 2017. A review of studies on green building assessment methods by comparative analysis, Energy and Buildings, 146: 152-159.
  • Liu, T. Y., Chen, P. H., Chou, N. N., 2019. Comparison of assessment systems for green building and green civil infrastructure, Sustainability, 11(7): 2117.
  • Lowe, J., Watts, N. 2011. An evaluation of a breeam case study project, Sheffield Hallam University Built Environment Research Transactions, 3, 42-53.
  • Madu, I. A., Nwankwo, C. F. 2020. Spatial pattern of climate change and farmer–herder conflict vulnerabilities in Nigeria, GeoJournal, 1-17.
  • Mahmoud, S., Zayed, T. and Fahmy, M. 2019. Development of sustainability assessment tool for existing buildings, Sustainable Cities and Society, 44: 99-119.
  • Mccrudden, C. 2004. Using public procurement to achieve social outcomes. Natural Resources Forum, Wiley Online Library, 257-267.
  • Nwankwo, C. F., Okafor, U. P. 2018. Impediments and desirability of complete ban on international movement of toxic waste, Open Political Science, 1(1): 131-135.
  • Raslanas, S., Kliukas, R. and Stasiukynas, A., 2016. Sustainability assessment for recreational buildings, Civil Engineering and Environmental Systems, 33(4): 286-312.
  • Rockström, J., Sachs, J. D., Öhman, M. C., Schmidt-Traub, G. 2013. Sustainable development and planetary boundaries. background research paper submitted to the high level panel on the post-2015 development agenda. Paris, New York: Sustainable Development Solutions Network.
  • Roodman, D. M., Lenssen, N. K., Peterson, J. A. 1995. A building revolution: how ecology and health concerns are transforming construction, Worldwatch Institute Washington, Dc.
  • Roostaie, S., Nawari, N., Kibert, C. J. 2019. Sustainability and resilience: A review of definitions, relationships, and their integration into a combined building assessment framework. Building and Environment, 154: 132-144.
  • Sadler, B. 2004. On evaluating the success of eia and sea. Assessing Impact: Handbook Of Eia And Sea Follow-Up, 248-285.
  • Solla, M., Ismail, L.H. and Yunus, R. 2016. Investigation on the potential of integrating BIM into green building assessment tools. ARPN Journal of Engineering and Applied Sciences, 11(4), 2412-2418.
  • Stender, M., Walter, A. 2019. The role of social sustainability in building assessment, Building Research & Information, 47(5): 598-610.
  • Tam, V. W., Tam, C., Zeng, S., Chan, K. 2006. Environmental performance measurement indicators in construction, Building And Environment, 41: 164-173.
  • Therivel, R. 2012. Strategic Environmental Assessment In Action, Routledge.
  • Uttam, K. 2014. Seeking sustainability in the construction sector: opportunities within impact assessment and sustainable public procurement, Kth Royal Institute Of Technology.
  • Williams, S., Chambers, T., Hills, S., Dowson, F. 2007. Buying A better world: sustainable public procurement. 2007. Forum For The Future.

Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups

Yıl 2021, Cilt: 3 Sayı: 2, 82 - 96, 24.08.2021
https://doi.org/10.38058/ijsl.893931

Öz

The construction sector is one of the significant users of energy and natural resources. It was estimated that the sector uses nearly 40% of the total raw-material inflow to the global economy each year. Based on this fact, the construction sector is an essential contributor to environmental pollution and poses challenges in meeting sustainable development goals. This paper discusses the building assessment tools or models used to assess whether a building meets environmental standards with the view to explore the applications of these tools and their benefits. The paper notes that the environmental assessment models and the assessment itself are worthwhile as it offers several benefits to the society and environment, especially the first among them, the Building Research Establishment Environmental Assessment Method (BREEAM) in the UK. The BREEAM model has created awareness among the stakeholders and has achieved high levels of success. Over 1000 buildings have been assessed in the UK and over 1800 individuals involved as assessors. Thus, it creates jobs in addition to protecting the environment. Mitigation measures are integrated into the certification. It is cost-effective, especially in the long run and more environmentally friendly, unlike the conventional ones. Moreover, efforts should be geared towards harmonising the rating scales and standards across continents or climate regions.

Kaynakça

  • Ahmad, T., Thaheem, M. J. 2018. Economic sustainability assessment of residential buildings: A dedicated assessment framework and implications for BIM, Sustainable Cities and Society, 38: 476-491.
  • Al-Qawasmi, J., Asif, M., El Fattah, A. A., Babsail, M. O. 2019. Water efficiency and management in sustainable building rating systems: Examining variation in criteria usage, Sustainability, 11(8): 2416.
  • Al-Qawasmi, J., 2019. Examining indicators coverage in a sample of sustainable building assessment systems. Architectural Engineering and Design Management, 15(2): 101-120.
  • Al-Sakkaf, A., Zayed, T., Bagchi, A. 2020. A sustainability based framework for evaluating the heritage buildings. International Journal of Energy Optimization and Engineering (IJEOE), 9(2): 49-73.
  • Atanda, J. O., Öztürk, A., 2020. Social criteria of sustainable development in relation to green building assessment tools, Environment, Development and Sustainability, 22(1): 61-87.
  • Berardi, U., 2012. Sustainability assessment in the construction sector: rating systems and rated buildings, Sustainable Development, 20(6): 411-424.
  • Bernardi, E., Carlucci, S., Cornaro, C., Bohne, R. A. 2017. An analysis of the most adopted rating systems for assessing the environmental impact of buildings, Sustainability, 9(7): 1226.
  • Bouwer, M., De Jong, K., Jonk, M., Berman, T., Bersani, R. et al. 2005. Green Public Procurement In Europe 2005–Status Overview, Virage Milieu & Management By, Haarlem, The Netherlands.
  • Braulio-Gonzalo, M., Bovea, M. D. 2020. Relationship between green public procurement criteria and sustainability assessment tools applied to office buildings, Environmental Impact Assessment Review, 81: 106310.
  • Calquin, D. A. L. 2017. August. Automated building data exchange between BIM and BPS supporting building environmental assessment methods (BEAM). In Proceedings of the 15th IBPSA Conference San Francisco, CA, USA. pp. 1329-1333.
  • Carvalho, J. P., Bragança, L., Mateus, R. 2019. Optimising building sustainability assessment using BIM, Automation in Construction, 102: 170-182.
  • Cole, R. J. 1998. Emerging trends in building environmental assessment methods, Building Research & Information, 26: 3-16.
  • Grace, M. 2000. Breeam-A practical method for assessing the sustainability of buildings for the new millennium. Proceedings: International Conference Sustainable Building 2000: 22-25.
  • Haapio, A., Viitaniemi, P. 2008. A critical review of building environmental assessment tools, Environmental Impact Assessment Review, 28: 469-482.
  • Haapio, A., 2012. Towards sustainable urban communities, Environmental Impact Assessment Review, 32(1): 165-169.
  • Hui, E. C., Tse, C. K., Yu, K. H. 2017. The effect of BEAM Plus certification on property price in Hong Kong. International Journal of Strategic Property Management, 21(4): 384-400.
  • Ilhan, B., Yaman, H. 2016. Green building assessment tool (GBAT) for integrated BIM-based design decisions, Automation in Construction, 70: 26-37.
  • Jacobs. 2017. Seminar delivered by the company to ea students in the school of geography, The University Of Leeds, 25 April 2017.
  • Kajikawa, Y., Inoue, T., Goh, T. N. 2011. Analysis of building environment assessment frameworks and their implications for sustainability indicators, Sustainability Science, 6: 233-246.
  • Karaca, F., Guney, M., Kumisbek, A., Kaskina, D. and Tokbolat, S. 2020. A new stakeholder opinion-based rapid sustainability assessment method (RSAM) for existing residential buildings, Sustainable Cities and Society, 60: 102-155.
  • Kawakubo, S., Murakami, S., Ikaga, T. and Asami, Y. 2018. Sustainability assessment of cities: SDGs and GHG emissions, Building Research & Information, 46(5): 528-539.
  • Lee, W. 2013. A comprehensive review of metrics of building environmental assessment schemes, Energy And Buildings, 62: 403-413.
  • Li, Y., Chen, X., Wang, X., Xu, Y. and Chen, P.H. 2017. A review of studies on green building assessment methods by comparative analysis, Energy and Buildings, 146: 152-159.
  • Liu, T. Y., Chen, P. H., Chou, N. N., 2019. Comparison of assessment systems for green building and green civil infrastructure, Sustainability, 11(7): 2117.
  • Lowe, J., Watts, N. 2011. An evaluation of a breeam case study project, Sheffield Hallam University Built Environment Research Transactions, 3, 42-53.
  • Madu, I. A., Nwankwo, C. F. 2020. Spatial pattern of climate change and farmer–herder conflict vulnerabilities in Nigeria, GeoJournal, 1-17.
  • Mahmoud, S., Zayed, T. and Fahmy, M. 2019. Development of sustainability assessment tool for existing buildings, Sustainable Cities and Society, 44: 99-119.
  • Mccrudden, C. 2004. Using public procurement to achieve social outcomes. Natural Resources Forum, Wiley Online Library, 257-267.
  • Nwankwo, C. F., Okafor, U. P. 2018. Impediments and desirability of complete ban on international movement of toxic waste, Open Political Science, 1(1): 131-135.
  • Raslanas, S., Kliukas, R. and Stasiukynas, A., 2016. Sustainability assessment for recreational buildings, Civil Engineering and Environmental Systems, 33(4): 286-312.
  • Rockström, J., Sachs, J. D., Öhman, M. C., Schmidt-Traub, G. 2013. Sustainable development and planetary boundaries. background research paper submitted to the high level panel on the post-2015 development agenda. Paris, New York: Sustainable Development Solutions Network.
  • Roodman, D. M., Lenssen, N. K., Peterson, J. A. 1995. A building revolution: how ecology and health concerns are transforming construction, Worldwatch Institute Washington, Dc.
  • Roostaie, S., Nawari, N., Kibert, C. J. 2019. Sustainability and resilience: A review of definitions, relationships, and their integration into a combined building assessment framework. Building and Environment, 154: 132-144.
  • Sadler, B. 2004. On evaluating the success of eia and sea. Assessing Impact: Handbook Of Eia And Sea Follow-Up, 248-285.
  • Solla, M., Ismail, L.H. and Yunus, R. 2016. Investigation on the potential of integrating BIM into green building assessment tools. ARPN Journal of Engineering and Applied Sciences, 11(4), 2412-2418.
  • Stender, M., Walter, A. 2019. The role of social sustainability in building assessment, Building Research & Information, 47(5): 598-610.
  • Tam, V. W., Tam, C., Zeng, S., Chan, K. 2006. Environmental performance measurement indicators in construction, Building And Environment, 41: 164-173.
  • Therivel, R. 2012. Strategic Environmental Assessment In Action, Routledge.
  • Uttam, K. 2014. Seeking sustainability in the construction sector: opportunities within impact assessment and sustainable public procurement, Kth Royal Institute Of Technology.
  • Williams, S., Chambers, T., Hills, S., Dowson, F. 2007. Buying A better world: sustainable public procurement. 2007. Forum For The Future.
Toplam 40 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Review
Yazarlar

Christopher Ezeh 0000-0001-9866-0549

Cletus Nwankwo 0000-0003-0071-4903

Yayımlanma Tarihi 24 Ağustos 2021
Yayımlandığı Sayı Yıl 2021 Cilt: 3 Sayı: 2

Kaynak Göster

APA Ezeh, C., & Nwankwo, C. (2021). Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups. International Journal of Science Letters, 3(2), 82-96. https://doi.org/10.38058/ijsl.893931
AMA Ezeh C, Nwankwo C. Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups. IJSL. Ağustos 2021;3(2):82-96. doi:10.38058/ijsl.893931
Chicago Ezeh, Christopher, ve Cletus Nwankwo. “Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups”. International Journal of Science Letters 3, sy. 2 (Ağustos 2021): 82-96. https://doi.org/10.38058/ijsl.893931.
EndNote Ezeh C, Nwankwo C (01 Ağustos 2021) Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups. International Journal of Science Letters 3 2 82–96.
IEEE C. Ezeh ve C. Nwankwo, “Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups”, IJSL, c. 3, sy. 2, ss. 82–96, 2021, doi: 10.38058/ijsl.893931.
ISNAD Ezeh, Christopher - Nwankwo, Cletus. “Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups”. International Journal of Science Letters 3/2 (Ağustos 2021), 82-96. https://doi.org/10.38058/ijsl.893931.
JAMA Ezeh C, Nwankwo C. Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups. IJSL. 2021;3:82–96.
MLA Ezeh, Christopher ve Cletus Nwankwo. “Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups”. International Journal of Science Letters, c. 3, sy. 2, 2021, ss. 82-96, doi:10.38058/ijsl.893931.
Vancouver Ezeh C, Nwankwo C. Assessment of Tools for Sustainability Appraisal of Buildings/Building Groups. IJSL. 2021;3(2):82-96.