This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Rathnasiri, P., Jayasena, S., & Siriwardena, M. (2021). Assessing the applicability of green building information modelling for existing green buildings. International Journal of Design & Nature and Ecodynamics, 15(6), 763–776.RathnasiriP.JayasenaS.SiriwardenaM.2021Assessing the applicability of green building information modelling for existing green buildingsInternational Journal of Design & Nature and Ecodynamics156763776Search in Google Scholar
Waqar, A., Othman, I., Saad, N., Azab, M., & Khan, A.M. (2023). BIM in green building: Enhancing sustainability in the small construction project. Cleaner Environmental Systems, 11, 100149.WaqarA.OthmanI.SaadN.AzabM.KhanA.M.2023BIM in green building: Enhancing sustainability in the small construction projectCleaner Environmental Systems11100149Search in Google Scholar
Brígitte, G.T.N., & Ruschel, R.C. (2013). Integrated model supporting environmental performance sımulations in the early stages of building design. Proceedings of 13th International Conference of the International-Building-Performance-Simulation-Association, (IBPSA), Chambery, France.BrígitteG.T.N.RuschelR.C.2013Integrated model supporting environmental performance sımulations in the early stages of building designProceedings of 13th International Conference of the International-Building-Performance-Simulation-Association, (IBPSA)Chambery, FranceSearch in Google Scholar
Zheng, L., Lu, W., Wu, L., & Zhou, Q. (2023). A review of integration between BIM and CFD for building outdoor environment simulation. Building and Environment, 228, 109862.ZhengL.LuW.WuL.ZhouQ.2023A review of integration between BIM and CFD for building outdoor environment simulationBuilding and Environment228109862Search in Google Scholar
Rindel, J.H. (2002). Modelling in auditorium acoustics - From ripple tank and scale models to computer simulations. Proceedings of Forum Acusticum, KL-04, Sevilla.RindelJ.H.2002Modelling in auditorium acoustics - From ripple tank and scale models to computer simulationsProceedings of Forum AcusticumKL-04, SevillaSearch in Google Scholar
Wu, C., & Clayton, M.J. (2013). BIM-based acoustic simulation framework. Proceedings of 30th CIB W78 International Conference, Beijing, China, 99–108.WuC.ClaytonM.J.2013BIM-based acoustic simulation frameworkProceedings of 30th CIB W78 International ConferenceBeijing, China99108Search in Google Scholar
Kim, S., Coffeen, R.C., & Sanguinetti, P. (2013). Interoperability Building Information Modeling and acoustical analysis software – A demonstration of a performing arts hall design process. Proceedings of Meetings on Acoustics, 19, Presented at the ICA 2013, Montreal, Canada: Acoustical Society of America.KimS.CoffeenR.C.SanguinettiP.2013Interoperability Building Information Modeling and acoustical analysis software – A demonstration of a performing arts hall design processProceedings of Meetings on Acoustics, 19, Presented at the ICA 2013Montreal, Canada: Acoustical Society of AmericaSearch in Google Scholar
Moral, A.L. (2020). Acoustic integration in BIM models. Proceedings of 49th International Congress and Exposition on Noise Control Engineering, Seoul, Korea.MoralA.L.2020Acoustic integration in BIM modelsProceedings of 49th International Congress and Exposition on Noise Control EngineeringSeoul, KoreaSearch in Google Scholar
Nik-Bakht, M., Lee, J., & Dehkordi, S.H. (2021). BIM-based reverberation time analysis. Journal of Information Technology in Construction (ITcon), 26, 28–38.Nik-BakhtM.LeeJ.DehkordiS.H.2021BIM-based reverberation time analysisJournal of Information Technology in Construction (ITcon)262838Search in Google Scholar
De Bellis, N. (2009). Bibliometrics and citation analysis: From the science citation index to cybermetrics. Scarecrow Press, USA.De BellisN.2009Bibliometrics and citation analysis: From the science citation index to cybermetricsScarecrow PressUSASearch in Google Scholar
Churruca, K., Pomare, C., Ellis, L.A., Long, J.C., & Braithwaite, J. (2019). The influence of complexity: A bibliometric analysis of complexity science in healthcare, BMJ Open, 9(3), e027308.ChurrucaK.PomareC.EllisL.A.LongJ.C.BraithwaiteJ.2019The influence of complexity: A bibliometric analysis of complexity science in healthcareBMJ Open93e027308Search in Google Scholar
Chang, Y.T., & Hsieh S.H. (2020). A review of Building Information Modeling research for green building design through building performance analysis. Journal of Information Technology in Construction (ITcon), 25, 1–40.ChangY.T.HsiehS.H.2020A review of Building Information Modeling research for green building design through building performance analysisJournal of Information Technology in Construction (ITcon)25140Search in Google Scholar
Azhar, S., & Brown, J. (2009). BIM for sustainability analyses. International Journal of Construction Education and Research, 5(4), 276–292.AzharS.BrownJ.2009BIM for sustainability analysesInternational Journal of Construction Education and Research54276292Search in Google Scholar
de la Hoz-Torres, M.L., Aguilar, A.J., Martínez-Aires, M.D., & Ruiz, D.P. (2022). Modelling and visualization for the analysis and comprehension of the acoustic performance of buildings through the implementation of a building information modelling-based methodology. Journal of the Acoustical Society of America, 152(3), 1515–1527.de la Hoz-TorresM.L.AguilarA.J.Martínez-AiresM.D.RuizD.P.2022Modelling and visualization for the analysis and comprehension of the acoustic performance of buildings through the implementation of a building information modelling-based methodologyJournal of the Acoustical Society of America152315151527Search in Google Scholar
Sušnik, M., Tagliabue, L.C., & Cairoli, M. (2021). BIM-based energy and acoustic analysis through CVE tools. Energy Reports, 7, 8228–8237.SušnikM.TagliabueL.C.CairoliM.2021BIM-based energy and acoustic analysis through CVE toolsEnergy Reports782288237Search in Google Scholar
Erfani, K., Mahabadipour, S., Nik-Bakht, M., & Li J. (2019). BIM-based simulation for analysis of reverberation time. Proceedings of the 16th IBPSA Conference, Rome, Italy.ErfaniK.MahabadipourS.Nik-BakhtM.LiJ.2019BIM-based simulation for analysis of reverberation timeProceedings of the 16th IBPSA ConferenceRome, ItalySearch in Google Scholar
Butorina M., Drozdova, L., Kuklin, D., Sharkov, A., Aref'ev, K., Sopozhnikov, S., Topazh, G., Lyamaev, B., Nagornyy, V., Simonov, A., & Muhametova, L. (2019). Implementation of noise data into building information model (BIM) to reduce noise in the environment and at workplace. Proceedings of IOP Conference Series: Earth Environmental Science, 337, 012083.ButorinaM.DrozdovaL.KuklinD.SharkovA.Aref'evK.SopozhnikovS.TopazhG.LyamaevB.NagornyyV.SimonovA.MuhametovaL.2019Implementation of noise data into building information model (BIM) to reduce noise in the environment and at workplaceProceedings of IOP Conference Series: Earth Environmental Science337012083Search in Google Scholar
Jung, N., Häkkinen, T., & Rekola, M. (2018). Extending capabilities of BIM to support performance based design. Journal of Information Technology in Construction (ITcon), 23, 16–52.JungN.HäkkinenT.RekolaM.2018Extending capabilities of BIM to support performance based designJournal of Information Technology in Construction (ITcon)231652Search in Google Scholar
Pääkkönen, R., Vehviläinen, T., Jokitulppo, J., Niemi, O., Nenonen, S., & Vinha, J. (2015). Acoustics and new learning environment – A case study. Applied Acoustics, 100, 74–78.PääkkönenR.VehviläinenT.JokitulppoJ.NiemiO.NenonenS.VinhaJ.2015Acoustics and new learning environment – A case studyApplied Acoustics1007478Search in Google Scholar
Madbouly, A.I., Noaman, A.Y., Ragab, A.H.M., Khedra, A.M., & Fayoumi, A.G. (2016). Assessment model of classroom acoustics criteria for enhancing speech intelligibility and learning quality. Applied Acoustics, 114, 147–158.MadboulyA.I.NoamanA.Y.RagabA.H.M.KhedraA.M.FayoumiA.G.2016Assessment model of classroom acoustics criteria for enhancing speech intelligibility and learning qualityApplied Acoustics114147158Search in Google Scholar
Sarlati, S., Haron, Z., Yahya, K., Darus, N., Dimon, N., & Athari, P. (2014). The importance of acoustic quality in classroom. Jurnal Teknologi, 70(7), 71–76.SarlatiS.HaronZ.YahyaK.DarusN.DimonN.AthariP.2014The importance of acoustic quality in classroomJurnal Teknologi7077176Search in Google Scholar
Garcia, D.P., Rasmussen, B., & Brunskog, J. (2014). Classroom acoustics design for speakers’ comfort and speech intelligibility: A European perspective. Proceedings of Forum Acusticum, Krakow, Poland.GarciaD.P.RasmussenB.BrunskogJ.2014Classroom acoustics design for speakers’ comfort and speech intelligibility: A European perspectiveProceedings of Forum AcusticumKrakow, PolandSearch in Google Scholar
Rosenberg, G.G. (2010). Classroom acoustics. Seminars in Hearing, 31(3), 188–202.RosenbergG.G.2010Classroom acousticsSeminars in Hearing313188202Search in Google Scholar
Trisnawan, D. (2018). Ecotect design simulation on existing building to enhance its energy efficiency. Proceedings of IOP Conference Series: Earth Environmental Science, 105, 012117.TrisnawanD.2018Ecotect design simulation on existing building to enhance its energy efficiencyProceedings of IOP Conference Series: Earth Environmental Science105012117Search in Google Scholar
Amani, N., & Reza Soroush, A.A. (2021). Building energy management using building ınformation modeling: Evaluation of building components and construction materials. Journal of Renewable Energy and Environment, 8(2), 31–38.AmaniN.Reza SoroushA.A.2021Building energy management using building ınformation modeling: Evaluation of building components and construction materialsJournal of Renewable Energy and Environment823138Search in Google Scholar
Carlos, J.S. (2017). The impact of refurbished windows on Portuguese old school buildings. Architectural Engineering and Design Management, 13(3), 185–201.CarlosJ.S.2017The impact of refurbished windows on Portuguese old school buildingsArchitectural Engineering and Design Management133185201Search in Google Scholar
Crawley D.B., Hand J.W., Kummert M., & Griffith B.T. (2008). Contrasting the capabilities of building energy performance simulation programs. Building and Environment, 43(4), 661–673.CrawleyD.B.HandJ.W.KummertM.GriffithB.T.2008Contrasting the capabilities of building energy performance simulation programsBuilding and Environment434661673Search in Google Scholar
Riether, G., & Butler, T. (2008). Simulation space: A new design environment for architects. Section 03: Prediction and Evaluation 1 - eCAADe, 26, 133–142.RietherG.ButlerT.2008Simulation space: A new design environment for architectsSection 03: Prediction and Evaluation 1 - eCAADe26133142Search in Google Scholar
Shih, H.Y., Chou, Y.T., & Hsia, S.Y. (2016). Improvement on acoustic characteristics of a small space using material selection. Engineering Computations, 33(6), 1800–1809.ShihH.Y.ChouY.T.HsiaS.Y.2016Improvement on acoustic characteristics of a small space using material selectionEngineering Computations33618001809Search in Google Scholar
Vasov, M., Cvetković, D., Bogdanović, V., & Bjelić, I. (2017). Assessment of reliability predictions of the reverberation time by using the architectonic software package Ecotect. FACTA UNIVERSITATIS Series: Architecture and Civil Engineering, 15(3), 359–370.VasovM.CvetkovićD.BogdanovićV.BjelićI.2017Assessment of reliability predictions of the reverberation time by using the architectonic software package EcotectFACTA UNIVERSITATIS Series: Architecture and Civil Engineering153359370Search in Google Scholar
Tokuc, A. (2009). Building energy simulation tools and selection criteria. Dokuz Eylül University Faculty of Engineering Journal of Science and Engineering, 5(3), 19–30.TokucA.2009Building energy simulation tools and selection criteriaDokuz Eylül University Faculty of Engineering Journal of Science and Engineering531930Search in Google Scholar
Ali, S.R., Mahdjoubi, L., Khan, A., & Sohail, F. (2016). A comperative study of ECOTECT, EngeryPlus & DAIlux (building energy lighting simulation) tools. Journal of Multidisciplinary Engineering Science and Technology, 3(2), 3869–3873.AliS.R.MahdjoubiL.KhanA.SohailF.2016A comperative study of ECOTECT, EngeryPlus & DAIlux (building energy lighting simulation) toolsJournal of Multidisciplinary Engineering Science and Technology3238693873Search in Google Scholar