Accesso libero

Environmental Benefits of Green Buildings with BIM Technology

   | 08 lug 2023
INFORMAZIONI SU QUESTO ARTICOLO

Cita

Nguyen TP, Nguyen VA, Pham DD, Do HQ. Intergrating building information modeling (BIM) and tools with green building certification system in designing and evaluating water efficiency of green building for sustainable buildings. IOP Conf Ser: Materials Sci Eng. 2021;1079(3):32063. DOI: 10.1088/1757-899X/1079/3/032063. Search in Google Scholar

Taiwo EM, Yahya KB, Haron Z. Utilisation of building information modelling for indoor environmental quality assessment - A review. IOP Conf Ser: Earth Environ Sci. 2019;220(1):12051. DOI: 10.1088/1755-1315/220/1/012051. Search in Google Scholar

Lu Y, Wu Z, Chang R, Li Y. Building Information Modeling (BIM) for green buildings: A critical review and future directions. Automat Constr. 2017;83:134-48. DOI: 10.1016/j.autcon.2017.08.024. Search in Google Scholar

Uddin MN, Wei HH, Chi HL, Ni M, Elumalai P. Building information modeling (BIM) incorporated green building analysis: An application of local construction materials and sustainable practice in the built environment. J Build Rehabil. 2021;6(1):1-25. DOI: 10.1007/s41024-021-00106-5. Search in Google Scholar

Jiménez-Roberto Y, Sebastián-Sarmiento J, Gómez-Cabrera A, Castillo GL. Analysis of the environmental sustainability of buildings using BIM (Building Information Modeling) methodology. Ing Compet. 2017;19(1):241-51. Available from: http://www.scielo.org.co/scielo.php?pid=S0123-30332017000100241&script=sci_arttext&tlng=en. Search in Google Scholar

Cedeño-Laurent JG, Williams A, MacNaughton P, Cao X, Eitland E, Spengler J, et al. Building evidence for health: Green buildings, current science, and future challenges. Annu Rev Public Health. 2018;(1):291-08. DOI: 10.1146/annurev-publhealth-031816-044420. Search in Google Scholar

Kauskale L, Geipele I, Zeltins N, Lecis I. Environmental and energy aspects of construction industry and green buildings. Latv J Phys Tech Sci. 2017;54(2):24-33. DOI: 10. 1515/lpts-2017-0010. Search in Google Scholar

Eisenstein W, Fuertes G, Kaam S, Seigel K, Arens E, Mozingo L. Climate co-benefits of green building standards: Water, waste and transportation. Build Res Inf. 2017;45(8):828-44. DOI: 10.1080/09613218.2016.1204519. Search in Google Scholar

Balaban O, de Oliveira JAP. Sustainable buildings for healthier cities: Assessing the co-benefits of green buildings in Japan. J Clean Prod. 2017;163:68-78. DOI: 10.1016/j.jclepro.2016.01.086. Search in Google Scholar

Lo CL. Environmental benefits of renewable building materials: A case study in Taiwan. Energy Buildings. 2017;140:236-44. DOI: 10.1016/j.enbuild.2017.02.010. Search in Google Scholar

Su Y, Wang L, Feng W, Zhou N, Wang L. Analysis of green building performance in cold coastal climates: An in-depth evaluation of green buildings in Dalian, China. Renew Sust Energy Rev. 2021;146:111149. DOI: 10.1016/j.rser.2021.111149. Search in Google Scholar

Wang B, Luo L, Wang F. Research on the incremental cost and benefit of green building based on the whole life cycle. IOP Conf Ser: Earth Environ Sci. 2015;580(1):12015. DOI: 10.1088/1755-1315/580/1/012015. Search in Google Scholar

Nan C, Jie Z. Estimation of environmental damages of cement building and environmental benefits of prefabricated building: A case study based on a residential project in Henan Province, China. Nature Environ Pollut Technol. 2020;19(2):721-8. DOI: 10.46488/NEPT.2020.v19i02.027. Search in Google Scholar

Alsulaili AD, Al-Matrouk MF, Al-Baghli RA, Al-Enezi AF. Environmental and economic benefits of applying green building concepts in Kuwait. Environ Dev Sust. 2020;22(4):3371-87. DOI: 10.1007/s10668-019-00352-1. Search in Google Scholar

Beccali M, Cellura M, Fontana M, Longo S, Mistretta M. Energy retrofit of a single-family house: Life cycle net energy saving and environmental benefits. Renew Sust Energy Rev. 2013;27:283-93. DOI: 10.1016/j.rser.2013.05.040. Search in Google Scholar

Arrigoni A, Zucchinelli M, Collatina D, Dotelli G. Life cycle environmental benefits of a forward-thinking design phase for buildings: the case study of a temporary pavilion built for an international exhibition. J Clean Prod. 2018;187(187):974-83. DOI: 10.1016/j.jclepro.2018.03.230. Search in Google Scholar

Mao G, Chen H, Du H, Zuo J, Pullen S, Wang Y. Energy consumption, environmental impacts and effective measures of green office buildings: A life cycle approach. J Green Build. 2015;10(4):161-77. DOI: 10.3992/jgb.10.4.161. Search in Google Scholar

Poon S. Deconstructing sustainability perceptions: Investigating technological innovation-environmental interaction in green buildings and the influence of architectural design. Int J Built Env Sust. 2020;8(1):91-101. DOI: 10.11113/ijbes.v8.n1.621. Search in Google Scholar

Wu CH, Tsai SB, Liu W, Shao XF, Xia YK, Wacławek M. Green environment and sustainable development: methods and applications. Ecol Chem Eng S. 2021;28(4),467-70. DOI: 10.2478/eces-2021-0030. Search in Google Scholar

Liu W, Tsai SB, Wu CH, Shao X, Wacławek M. Corporate environmental management and sustainable operation: theory and application. Ecol Chem Eng S. 2022;29(3):283-5. DOI: 10.2478/eces-2022-0020. Search in Google Scholar

eISSN:
2084-4549
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Chemistry, Sustainable and Green Chemistry, Engineering, Electrical Engineering, Energy Engineering, Life Sciences, Ecology