Green Building Assessment on Arena Innovation UGM Creativity Based on BGH Method and Greenship
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This study aim to know calculation BGH values on development GIK UGM building and review study previously discussed about evaluation building green. This research use type study descriptive that explains about utilization theme green building in this research. The results during ten year final there is more of 1000 studies that discuss about BGH theme and evaluation building green. Results search theme building green with utilise Publish or Perish app and Google Scholar website and crossref with set time search for 10 years, researchers get results of 19.50 cited papers per year and every researchers at least make two papers per year. Furthermore done mapping the themes presented in form graph. Results BGH assessment on implementation the construction of GIK UGM shows that development has fulfil BGH criteria according with the indicators that have been set . The development of GIK UGM meets part BGH's achievements with criteria greenship especially on indicator EEC, WC, IHC, and BEM, are shown through conservation energy and water, management quality buildings, as well as implementation management safety Work . Results BGH assessment with criteria greenship show that development has in accordance with applicable criteria.
Agusintadewi, NK, Janiawati, NLE, & Widiastuti, W. (2021). Appropriate Site Development in the Application of the Green Building Concept: An Evaluation of the Planning of Gianyar Public Market. Architecture , 19 (2), 195.
https://doi.org/10.20961/arst.v19i2.47689
Biantoro, AW, Utaberta, N., Mulyadi, D., & Nahdatunisa, and. (2025). Research on Design of Rainwater Harvesting Technology and Solar Cells for Drinking Water in Coastal Areas. IOP Conference Series: Earth and Environmental Science , 1543 (1), 012005. https://doi.org/10.1088/1755-1315/1543/1/012005
Chen, Y., & Luo, L. (2020). Analysis of environmental benefits of green buildings from the perspective of carbon emissions. E3S Web of Conferences , 145 .
https://doi.org/10.1051/e3sconf/202014502054
Fagan, B. (2020). What Is Green Infrastructure? TR News , 328 .
Geng, Y., Ji, W., Wang, Z., Lin, B., & Zhu, Y. (2019). A review of operating performance in green buildings: Energy use, indoor environmental quality and occupant satisfaction. Energy and Buildings , 183 , 500–514.
https://doi.org/10.1016/j.enbuild.2018.11.017
Kadek, BW, Kumara, I., & Sari Hartati, R. (2021). Literature Study on Green Building Development in Indonesia. In SPEKTRUM Journal (Vol. 8, Issue 2, p. 37).
https://doi.org/10.24843/spektrum.2021.v08.i02.p5
Khan, M.A., Wang, C.C., & Lee, C.L. (2021). A framework for developing green building rating tools based on Pakistan's local context. Buildings , 11 (5). https://doi.org/10.3390/buildings11050202
Khoshnava, S.M., Rostami, R., Zin, R.M., Štreimikienė, D., Mardani, A., & Ismail, M. (2020). The role of green building materials in reducing environmental and human health impacts. International Journal of Environmental Research and Public Health , 17 (7).
https://doi.org/10.3390/ijerph17072589
Noviyanto, O., & Biantoro, AW (2024). Literature Review of the Green Building Concept of the Minister of PUPR RI Regulation Number 21 of 2021 concerning Evaluation of Building Performance Building Green. Engineering and Technology Journal , 09 (12), 5596–5599.
https://doi.org/10.47191/etj/v9i12.04
Rizki, MA, Hermawan, H., & Wahyuni, A. (2023). Evaluation of a Bim-Based Green Campus. TAPAK (Construction Application Technology): Journal of the Civil Engineering Study Program , 12 (2), 223. https://doi.org/10.24127/tp.v12i2.2612
Singh, V.P., Kumar, A., Meena, C.S., Thangavel, S., & Ghosh, A. (2024). Innovation in green building sector for sustainable future Fundamentals to Advances. Sustainable Technologies for Energy Efficient Buildings , 1–20.
https://doi.org/10.1201/9781003496656-1
Sujana, CM, & Jeremi. (2024). Analysis of the implementation of green building on the Syahdan Campus building based on the Green Building Council Indonesia (GBCI) specifications. IOP Conference Series: Earth and Environmental Science , 1324 (1). https://doi.org/10.1088/1755-1315/1324/1/012024
Sutikno, Husin, AE, & Iswidyantara, AM (2023). Indonesia MICE green building project with value engineering and its influential factors: an SEM-PLS approach. Synergy (Indonesia) , 27 (1), 101–110. https://doi.org/10.22441/sinergi.2023.1.012
Tran, Q., & Huang, D. (2022). Using PLS-SEM to analyze challenges hindering success of green building projects in Vietnam. Journal of Economics and Development , 24 (1), 47–64.
https://doi.org/10.1108/JED-04-2020-0033
Wang, Z., Hong, T., Li, H., & Ann Piette, M. (2021a). Predicting city-scale daily electricity consumption using data-driven models. Advances in Applied Energy , 2 (April), 100025. https://doi.org/10.1016/j.adapen.2021.100025
Wang, Z., Hong, T., Li, H., & Ann Piette, M. (2021b). Predicting city-scale daily electricity consumption using data-driven models. Advances in Applied Energy , 2 (January), 100025. https://doi.org/10.1016/j.adapen.2021.100025
Warsito, W., & Rokhmawati, A. (2021a). Model of Influencing Factors of Green Building Concept Implementation on Housing Development Decisions. Civil Engineering Journal (e-Journal) . https://jim.unisma.ac.id/index.php/ft/article/view/23417%0Ahttps://jim.unisma.ac.id/index.php/ft/article/download/23417/17519
Warsito, W., & Rokhmawati, A. (2021b). Model of Influencing Factors of Green Building Concept Implementation on Housing Development Decisions. Civil Engineering Journal (e-Journal) , 1 (5), 1–9.
