Case Studies
Jul 16, 2021

Integrated Framework of BIM and GIS Applications to Support Building Lifecycle: A Move toward nD Modeling

Publication: Journal of Architectural Engineering
Volume 27, Issue 4

Abstract

The utilization of building information modeling (BIM) to support various tasks of building lifecycle management (BLM) has been reported in a range of studies. However, during its lifetime, a building is an important part of its immediate surroundings; hence, its lifecycle must not be managed in isolation as a single entity without considering its participation in the immediate surroundings. BLM must consider in what way surroundings influence lifecycle and how a building impacts its surroundings. The use of geographic information system (GIS) has been reported in a range of studies for supporting various tasks of building lifecycle in which BIM is lacking. Understanding the participation of a building in its surroundings is also done by using GIS, however potential use of GIS in the entire lifecycle of a building has not yet been investigated. The review of literature produced a list of application areas of BIM and GIS which may possibly improve existing BLM processes, specifically, the possible ways to consider surroundings, site constraints, locational effects, and services of nearby facilities/utilities. An interactive and collaborative practical framework has been developed by using the main application areas of BIM and GIS seamlessly in various stages of BLM, enabling data reuse in all stages, developing efficient designs and plans, and making sustainable decisions. The developed framework was used for the lifecycle management of the building project taken as a case study. It has been established that the application areas of both BIM and GIS have a coordinated solution to makes BLM a multidisciplinary perspective.

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References

Abd, A. M., A. H. Hameed, and B. M. Nsaif. 2020. “Documentation of construction project using integration of BIM and GIS technique.” Asian J. Civ. Eng. 21 (7): 1249–1257. https://doi.org/10.1007/s42107-020-00273-9.
Adams, T. M. 1994. “GIS-based subsurface data management.” Comput.-Aided Civ. Infrastruct. Eng. 9 (4): 305–313. https://doi.org/10.1111/j.1467-8667.1994.tb00338.x.
Akinade, O. O., L. O. Oyedele, M. Bilal, S. O. Ajayi, H. A. Owolabi, H. A. Alaka, and S. A. Bello. 2015. “Waste minimisation through deconstruction: A BIM based deconstructability assessment score (BIM-DAS).” Resour. Conserv. Recycl. 105: 167–176. https://doi.org/10.1016/j.resconrec.2015.10.018.
Akınci, B., H. A. Karımi, A. Pradhan, C. C. Wu, and G. Fichtl. 2010. “CAD and GIS interoperability through semantic web services.” In CAD and GIS integration, edited by H. A. Karimi, and B. Akinci. Boca Raton: Auerbach Publications, Taylor and Francis Group.
Al-Kodmany, K. 1999. “Using visualization techniques for enhancing public participation in planning and design: Process, implementation, and evaluation.” Landscape Urban Plann. 45 (1): 37–45. https://doi.org/10.1016/S0169-2046(99)00024-9.
Amirebrahimi, S., A. Rajabifard, P. Mendis, and T. Ngo. 2016a. “A framework for a microscale flood damage assessment and visualization for a building using BIM–GIS integration.” Int. J. Digital Earth 9 (4): 363–386. https://doi.org/10.1080/17538947.2015.1034201.
Amirebrahimi, S., A. Rajabifard, P. Mendis, and T. Ngo. 2016b. “A BIM-GIS integration method in support of the assessment and 3D visualisation of flood damage to a building.” J. Spatial Sci. 61 (2): 317–350. https://doi.org/10.1080/14498596.2016.1189365.
Andoh, A., X. Su, and H. Cai. 2012. “A framework of RFID and GPS for tracking construction site dynamics.” In Construction Research Congress 2012: Construction Challenges in a Flat World, edited by H. Cai, A. Kandil, M. Hastak, and P. S. Dunston, 818–827. Reston, VA: ASCE.
Andrews, C. 2019. “Common patterns for BIM and GIS integration.” Accessed January 6, 2021. https://www.esri.com/arcgis-blog/products/arcgis-pro/transportation/common-patterns-for-bim-and-gis-integration/.
Anil, E., P. Tang, B. Akinci, and D. Huber. 2013. “Deviation analysis method for the assessment of the quality of the as-is building information models generated from point cloud data.” Autom. Constr. 35: 507–516. https://doi.org/10.1016/j.autcon.2013.06.003.
Anumba, C., A. R. J. Dainty, S. G. Ison, and A. Sergeant. 2005. “The application of GIS to construction labour market planning.” Constr. Innov. 5 (4): 219–230. https://doi.org/10.1108/14714170510815267.
Aouad, G., A. Lee, and S. Wu. 2007. Construction the future: nD modelling. London: Taylor and Francis.
Azhar, S., and J. Brown. 2009. “BIM for sustainability analyses.” Int. J. Constr. Educ. Res. 5 (4): 276–292. https://doi.org/10.1080/15578770903355657.
Bahar, Y. N., C. Pere, J. Landrieu, and C. Nicolle. 2013. “A thermal simulation tool for building and its interoperability through the building information modeling (BIM) platform.” Buildings 3 (2): 380–398. https://doi.org/10.3390/buildings3020380.
Bansal, V. K. 2011a. “Use of GIS and topology in the identification and resolution of space conflicts.” J. Comput. Civil Eng. 25 (2): 159–171. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000075.
Bansal, V. K. 2011b. “Application of geographic information systems in construction safety planning.” Int. J. Project Manage. 29 (1): 66–77. https://doi.org/10.1016/j.ijproman.2010.01.007.
Bansal, V. K. 2012. “Application areas of GIS in construction projects and future research directions.” Int. J. Constr. Manage. 12 (4): 17–36. https://doi.org/10.1080/15623599.2012.10773198.
Bansal, V. K. 2014. “Use of geographic information systems in spatial planning: A case study of an institute campus.” J. Comput. Civil Eng. 28 (4): 05014002. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000296.
Bansal, V. K. 2016. “Potential application areas of GIS in pre-construction planning.” J. Prof. Issues Eng. Educ. Pract. 142 (1): 06015002. https://doi.org/10.1061/(ASCE)EI.1943-5541.0000257.
Bansal, V. K. 2017. “Integrated CAD and GIS-based framework to support construction planning: A case study.” J. Archit. Eng. 23 (3): 05017005. https://doi.org/10.1061/(ASCE)AE.1943-5568.0000262.
Bansal, V. K., and M. Pal. 2007. “Potential of geographic information systems in building cost estimation and visualization.” Autom. Constr. 16 (3): 311–322. https://doi.org/10.1016/j.autcon.2006.07.002.
Bansal, V. K., and M. Pal. 2008. “Generating, evaluating and visualizing construction schedule with geographic information systems.” J. Comput. Civil Eng. 22 (4): 233–242. https://doi.org/10.1061/(ASCE)0887-3801(2008)22:4(233).
Bansal, V. K., and M. Pal. 2011. “Construction projects scheduling using GIS tools.” Int. J. Constr. Manage. 11 (1): 1–18. https://doi.org/10.1080/15623599.2011.10773158.
Becerik-Gerber, B., F. Jazizadeh, N. Li, and G. Calis. 2012. “Application areas and data requirements for BIM-enabled facilities management.” J. Constr. Eng. Manage. 138 (3): 431–442. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000433.
Bonnal, P., D. Gourc, and G. Lacoste. 2002. “The life cycle of technical projects.” Project Manage. J. 33 (1): 12–19. https://doi.org/10.1177/875697280203300104.
Borrmann, A., and E. Rank. 2009. “Specification and implementation of directional operators in a 3D spatial query language for building information models.” Adv. Eng. Inf. 23 (1): 32–44. https://doi.org/10.1016/j.aei.2008.06.005.
bSDD. 2014. “BuildingSMART Data Dictionary (bSDD).” Accessed April 11, 2014. https://www.buildingsmart.org/users/services/buildingsmart-data-dictionary/.
BuildingSMART. 2014. “BuildingSMART international home of openBIM.” Accessed May 1, 2014. http://www.buildingsmart.org/.
Bynum, P., R. R. A. Issa, and S. Olbina. 2013. “Building information modeling in support of sustainable design and construction.” J. Constr. Eng. Manage. 139 (1): 24–34. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000560.
Camp, C. V., and M. C. Brown. 1993. “GIS procedure for developing three-dimensional subsurface profile.” J. Comput. Civil Eng. 7 (3): 296–309. https://doi.org/10.1061/(ASCE)0887-3801(1993)7:3(296).
Cerovsek, T. 2011. “A review and outlook for a ‘building information model’ (BIM): A multi-standpoint framework for technological development.” Adv. Eng. Inf. 25 (2): 224–244. https://doi.org/10.1016/j.aei.2010.06.003.
Chen, A. Y., F. P. Mora, and Y. Ouyang. 2011. “A collaborative GIS framework to support equipment distribution for civil engineering disaster response operations.” Autom. Constr. 20 (5): 637–648. https://doi.org/10.1016/j.autcon.2010.12.007.
Chen, L. J., and H. Luo. 2014. “A BIM-based construction quality management model and its applications.” Autom. Constr. 46: 64–73. https://doi.org/10.1016/j.autcon.2014.05.009.
Cheng, J. C. P., and L. Y. H. Ma. 2013. “A BIM-based system for demolition and renovation waste estimation and planning.” Waste Manage. (Oxford) 33 (6): 1539–1551. https://doi.org/10.1016/j.wasman.2013.01.001.
Cheng, M. Y., and G. L. Chang. 2001. “Automating utility route design and planning through GIS.” Autom. Constr. 10 (4): 507–516. https://doi.org/10.1016/S0926-5805(00)00103-5.
Cheng, M. Y., and J. C. Chen. 2002. “Integrating barcode and GIS for monitoring construction progress.” Autom. Constr. 11 (1): 23–33. https://doi.org/10.1016/S0926-5805(01)00043-7.
Cheng, M. Y., and J. T. O’Connor. 1994. “Site layout of construction temporary facilities using an enhanced-geographic information system (GIS).” Autom. Constr. 3 (1): 11–19. https://doi.org/10.1016/0926-5805(94)90028-0.
Cheng, M. Y., and J. T. O’Connor. 1996. “Arcsite: Enhanced GIS for construction site layout.” J. Constr. Eng. Manage. 122 (4): 329–336. https://doi.org/10.1061/(ASCE)0733-9364(1996)122:4(329).
Cheng, M. Y., and C. Y. Yang. 2001. “GIS-based cost estimates integrating with material layout planning.” J. Constr. Eng. Manage. 127 (4): 291–299. https://doi.org/10.1061/(ASCE)0733-9364(2001)127:4(291).
Cheung, F. K. T., J. Rihan, J. Tah, D. Duce, and E. Kurul. 2012. “Early stage multi-level cost estimation for schematic BIM models.” Autom. Constr. 27: 67–77. https://doi.org/10.1016/j.autcon.2012.05.008.
Choi, B., H. S. Lee, M. Park, Y. K. Cho, H. Kim. 2014. “Framework for work-space planning using four-dimensional BIM in construction projects.” J. Constr. Eng. Manage. 140 (9): 04014041. https://doi.org/10.1061/(ASCE)CO.1943-7862.0000885.
de Laat, R., and L. van Berlo. 2011. “Integration of BIM and GIS: The development of the CityGML GeoBIM extension.” In Lecture notes in geo-information and cartography, advances in 3D Geo-information sciences, edited by T. H. Kolbe, G. König, and C. Nagel, 211–225. Berlin: Springer.
Deng, Y., V. J. L. Gan, M. Das, J. C. P. Cheng, and C. Anumba. 2019. “Integrating 4D BIM and GIS for construction supply chain management.” J. Constr. Eng. Manage. 145 (4): 04019016. https://doi.org/10.1061/(ASCE)CO.1943-7862.0001633.
Diakite, A. A., and S. Zlatanova. 2020. “Automatic geo-referencing of BIM in GIS environments using building footprints.” Comput. Environ. Urban Syst. 80: 101453. https://doi.org/10.1016/j.compenvurbsys.2019.101453.
Ding, L., Y. Zhou, and B. Akinci. 2014. “Building information modeling (BIM) application framework: The process of expanding from 3D to computable nD.” Autom. Constr. 46: 82–93. https://doi.org/10.1016/j.autcon.2014.04.009.
Gallaher, M. P., A. C. O’Connor, J. L. Dettbarn, and L. T. Gilday. 2004. Cost analysis of inadequate interoperability in the US capital facilities industry. NIST Publication GCR 04-867. Gaithersburg, MD: NIST.
Göçer, Ö, Y. Hua, and K. Göçer. 2016. “A BIM-GIS integrated pre-retrofit model for building data mapping.” Build. Simul. 9 (5): 513–527. https://doi.org/10.1007/s12273-016-0293-4.
Goedert, J. D., and P. Meadati. 2008. “Integrating construction process documentation into building information modeling.” J. Constr. Eng. Manage. 134 (7): 509–516. https://doi.org/10.1061/(ASCE)0733-9364(2008)134:7(509).
Golparvar-Fard, M., F. Peña-Mora, and S. Savarese. 2015. “Automated progress monitoring using unordered daily construction photographs and IFC-based building information models.” J. Comput. Civil Eng. 29 (1): 04014025. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000205.
Gunes, A. E., and J. P. Kovel. 2000. “Using GIS in emergency management operations.” J. Urban Plann. Dev. 126 (3): 136–149. https://doi.org/10.1061/(ASCE)0733-9488(2000)126:3(136).
Guo, H. L., H. Li, and M. Skitmore. 2010. “Life-cycle management of construction projects based on virtual prototyping technology.” J. Manage. Eng. 26 (1): 41–47. https://doi.org/10.1061/(ASCE)0742-597X(2010)26:1(41).
Hamidi, B., T. Bulbul, A. Pearce, and W. Thabet. 2014. “Potential application of BIM in cost-benefit analysis of demolition waste management.” In Construction Research Congress 2014: Construction in a Global Network, edited by D. Castro-Lacouture, J. Irizarry, and B. Ashuri, 279–288. Reston, VA: ASCE.
Hammond, R., N. O. Nawari, and B. Walters. 2014. “BIM in sustainable design: Strategies for retrofitting/renovation.” In Computing in Civil and Building Engineering, edited by R. I. Issa, and I. Flood, 1969–1977. Reston, VA: ASCE.
Hartmann, T., R. Amor, and E. W. East. 2017. “Information model purposes in building and facility design.” J. Comput. Civil Eng. 31 (6): 04017054. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000706.
Hegazy, T. 2005. “GIS support for optimizing infrastructure programs of distributed sites.” In Proc., 10th Int. Conf. on Civil, Structural and Environmental Engineering Computing, 1–10 Stirling, Scotland: Civil-Comp Press. Accessed May 15, 2019. https://www.ctresources.info/ccp/pdf.html?id=237.
Irizarry, J., and E. P. Karan. 2012. “Optimizing location of tower cranes on construction sites through GIS and BIM integration.” J. Inf. Technol. Constr. 17 (23): 351–366.
Irizarrya, J., E. P. Karan, and F. Jalaeib. 2013. “Integrating BIM and GIS to improve the visual monitoring of construction supply chain management.” Autom. Constr. 31: 241–254. https://doi.org/10.1016/j.autcon.2012.12.005.
Isikdag, U., J. Underwood, and G. Aouad. 2008. “An investigation into the applicability of building information models in geospatial environment in support of site selection and fire response management processes.” Adv. Eng. Inf. 22 (4): 504–519. https://doi.org/10.1016/j.aei.2008.06.001.
Isikdag, U., S. Zlatanova, and J. Underwood. 2013. “A BIM-oriented model for supporting indoor navigation requirements.” Comput. Environ. Urban Syst. 41: 112–123. https://doi.org/10.1016/j.compenvurbsys.2013.05.001.
Jaafari, A. 2000. “Life-cycle project management: A proposed theoretical model for development and implementation of capital projects.” Project Manage. J. 31 (1): 44–52. https://doi.org/10.1177/875697280003100107.
Jaafari, A., and H. K. Doloi. 2002. “A simulation model for life cycle project management.” Comput.-Aided Civ. Infrastruct. Eng. 17 (3): 162–174. https://doi.org/10.1111/1467-8667.00264.
Jaafari, A., and K. Manivong. 1998. “Towards a smart project management information system.” Int. J. Project Manage. 16 (4): 249–265. https://doi.org/10.1016/S0263-7863(97)00037-9.
Jeljeli, M. N., J. S. Russell, H. W. G. Meyer, and A. P. Vonderohe. 1993. “Potential applications of geographic information systems to construction industry.” J. Constr. Eng. Manage. 119 (1): 72–86. https://doi.org/10.1061/(ASCE)0733-9364(1993)119:1(72).
Jiang, L., and R. M. Leicht. 2015. “Automated rule-based constructability checking: Case study of formwork.” J. Manage. Eng. 31 (1): A4014004. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000304.
Jiao, Y., Y. Wang, S. Zhang, Y. Li, B. Yang, and L. Yuan. 2013. “A cloud approach to unified lifecycle data management in architecture, engineering, construction and facilities management: Integrating BIMs and SNS.” Adv. Eng. Inf. 27 (2): 173–188. https://doi.org/10.1016/j.aei.2012.11.006.
Jones, E. E. 2006. “Using viewshed analysis to explore settlement choice: A case study of the Onondaga Iroquois.” Am. Antiquity 71 (3): 523–538. https://doi.org/10.1017/S0002731600039792.
Jung, Y., and M. Joo. 2011. “Building information modelling (BIM) framework for practical implementation.” Autom. Constr. 20 (2): 126–133. https://doi.org/10.1016/j.autcon.2010.09.010.
Kang, T. W., and C. H. Hong. 2015. “A study on software architecture for effective BIM/GIS-based facility management data integration.” Autom. Constr. 54: 25–38. https://doi.org/10.1016/j.autcon.2015.03.019.
Kapoor, N., V. K. Bansal, and M. Jain. 2020a. “Development of creative problem solving-based framework for site planning in hill areas.” Front. Archit. Res. 9 (2): 450–466. https://doi.org/10.1016/j.foar.2019.12.003.
Kapoor, N., M. Jain, and V. K. Bansal. 2019. “GIS-based framework for local spatial planning in hill areas.” Int. Rev. Spatial Plann. Sustainable Dev. 7 (4): 113–130. https://doi.org/10.14246/irspsd.7.4_113.
Kapoor, N., M. Jain, and V. K. Bansal. 2020b. “A methodological approach for weighting factors in land suitability assessment: A tool for facilitating spatial planning.” J. Mountain Sci. 17 (3): 724–739. https://doi.org/10.1007/s11629-018-5270-1.
Kim, H., K. Anderson, S. H. Lee, and J. Hildreth. 2013. “Generating construction schedules through automatic data extraction using open BIM (building information modeling) technology.” Autom. Constr. 35: 285–295. https://doi.org/10.1016/j.autcon.2013.05.020.
Kim, H. M., B. H. Son, Y. C. Kim, and W. H. Hong. 2011. “A study of how to improve of building waste management systems using by BIM/GIS.” J. Korea Spatial Inf. Soc. 19 (5): 53–62.
Kim, J. E., T. W. Kang, and C. H. Hong. 2014. “Development of the spatial indexing method for the effective visualization of BIM data based on GIS.” J. Korea Academia-Ind. Cooperation Soc. 15 (8): 5333–5341. https://doi.org/10.5762/KAIS.2014.15.8.5333.
Kim, K., and J. Teizer. 2014. “Automatic design and planning of scaffolding systems using building information modeling.” Adv. Eng. Inf. 28 (1): 66–80. https://doi.org/10.1016/j.aei.2013.12.002.
Ko, C. H. 2013. “3D-Web-GIS RFID location sensing system for construction objects.” Sci. World J. 2013: 217972. https://doi.org/10.1155/2013/217972.
Kolbe, T. H., G. Gröger, and L. Plümer. 2005. “CityGML—Interoperable access to 3D city models.” In Int. Symp. on Geo-Information for Disaster Management, edited by P. van Oosterom, S. Zlatanova, and E. M. Fendel, 883–899. Berlin: Springer.
Kota, S., J. S. Haberl, M. J. Clayton, and W. Yan. 2014. “Building information modeling (BIM)-based daylighting simulation and analysis.” Energy Build. 81: 391–403. https://doi.org/10.1016/j.enbuild.2014.06.043.
Kumar, S., and V. K. Bansal. 2016. “A GIS-based methodology for safe site selection of a building in a hilly region.” Front. Archit. Res. 5 (1): 39–51. https://doi.org/10.1016/j.foar.2016.01.001.
Kumar, S., and V. K. Bansal. 2020. “GIS-Based locational evaluation of infrastructural facilities in hilly regions: A case study of an institute campus.” Int. J. Constr. Manage.. https://doi.org/10.1080/15623599.2019.1604114.
Kumar, S. S., and J. C. P. Cheng. 2015. “A BIM-based automated site layout planning framework for congested construction sites.” Autom. Constr. 59: 24–37. https://doi.org/10.1016/j.autcon.2015.07.008.
Labuschagne, C., and A. C. Brent. 2005. “Sustainable project life cycle management: The need to integrate life cycles in the manufacturing sector.” Int. J. Project Manage. 23 (2): 159–168. https://doi.org/10.1016/j.ijproman.2004.06.003.
Lee, A., A. J. Marshall-Ponting, G. Aouad, S. Wu, I. Koh, C. Fu, R. Cooper, M. Betts, M. Kagioglou, and M. Fischer. 2003. Developing a vision of nD-enabled construction. Construct IT Rep. Manchester, UK: University of Salford.
Lee, S. I., J. S. Bae, and Y. S. Cho. 2012. “Efficiency analysis of set-based design with structural building information modeling (S-BIM) on high-rise building structures.” Autom. Constr. 23: 20–32. https://doi.org/10.1016/j.autcon.2011.12.008.
Li, B., F. F. Fu, H. Zhong, and H. B. Luo. 2012. “Research on the computational model for carbon emissions in building construction stage based on BIM.” Struct. Survey 30 (5): 411–425. https://doi.org/10.1108/02630801211288198.
Li, H., Z. Chen, L. Yong, and S. C. W. Kong. 2005. “Application of integrated GPS and GIS technology for reducing construction waste and improving construction efficiency.” Autom. Constr. 14 (3): 323–331. https://doi.org/10.1016/j.autcon.2004.08.007.
Li, H., C. W. Kong, Y. C. Pang, W. Z. Shi, and L. Yu. 2003. “Internet-based geographical information systems system for E-commerce application in construction material procurement.” J. Constr. Eng. Manage. 129 (6): 689–697. https://doi.org/10.1061/(ASCE)0733-9364(2003)129:6(689).
Liu, H., M. Al-Hussein, and M. Lu. 2015a. “BIM-based integrated approach for detailed construction scheduling under resource constraints.” Autom. Constr. 53: 29–43. https://doi.org/10.1016/j.autcon.2015.03.008.
Liu, R., and R. Issa. 2012. “3D visualization of sub-surface pipelines in connection with the building utilities: Integrating GIS and BIM for facility management.” In Computing in Civil Engineering, edited by R. Raymond Issa, and I. Flood, 341–348. Reston, VA: ASCE.
Liu, S., X. Meng, and C. Tam. 2015b. “Building information modeling based building design optimization for sustainability.” Energy Build. 105: 139–153. https://doi.org/10.1016/j.enbuild.2015.06.037.
Liu, X., X. Wang, G. Wright, J. C. P. Cheng, X. Li, and R. Liu. 2017. “A state-of-the-art review on the integration of building information modeling (BIM) and geographic information system (GIS).” ISPRS Int. J. Geo-Inf. 6 (2): 53. https://doi.org/10.3390/ijgi6020053.
Martz, L. W., and J. Garbrecht. 1998. “The treatment of flat areas and depressions in automated drainage analysis of raster digital elevation models.” Hydrol. Processes 12 (6): 843–855. https://doi.org/<843::AID-HYP658>3.0.CO;2-R.
Migliaccio, G., P. Zandbergen, and A. Martinez. 2013. “Empirical comparison of methods for estimating location cost adjustments factors.” J. Manage. Eng. 31 (2): 04014037. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000240.
Motawa, I., and A. Almarshad. 2013. “A knowledge-based BIM system for building maintenance.” Adv. Eng. Inf. 29: 173–182.
MVD (Model View Definitions). 2014. “BuildingSMART, Process—Model View Definitions (MVD).” Accessed April 23, 2014. https://www.buildingsmart.org/standards/bsi-standards/model-view-definitions-mvd/.
Nath, T., M. Attarzadeh, R. L. K. Tiong, C. Chidambaram, and Z. Yu. 2015. “Productivity improvement of precast shop drawings generation through BIM-based process re-engineering.” Autom. Constr. 54 (6): 54–68. https://doi.org/10.1016/j.autcon.2015.03.014.
Niu, S., W. Pan, and Y. Zhao. 2015. “A BIM-GIS integrated web-based visualization system for low energy building design.” Procedia Eng. 121: 2184–2192. https://doi.org/10.1016/j.proeng.2015.09.091.
OGC. 2014. “Open Geospatial Consortium making location count.” Accessed April 4, 2014. http://www.opengeospatial.org/.
Oloufa, A. A., A. A. Eltahan, and C. S. Papacostas. 1994. “Integrated GIS for construction site investigation.” J. Constr. Eng. Manage. 120 (1): 211–222. https://doi.org/10.1061/(ASCE)0733-9364(1994)120:1(211).
Oti, A. H., and W. Tizani. 2015. “BIM extension for the sustainability appraisal of conceptual steel design.” Adv. Eng. Inf. 29 (1): 28–46. https://doi.org/10.1016/j.aei.2014.09.001.
Ozturk, G. B. 2020. “Interoperability in building information modeling for AECO/FM industry.” Autom. Constr. 113: 103122. https://doi.org/10.1016/j.autcon.2020.103122.
Park, J., and H. Cai. 2017. “WBS-based dynamic multi-dimensional BIM database for total construction as-built documentation.” Autom. Constr. 77 (5): 15–23. https://doi.org/10.1016/j.autcon.2017.01.021.
Park, J., B. Kim, C. Kim, and H. Kim. 2011. “3D/4D CAD applicability for life-cycle facility management.” J. Comput. Civil Eng. 25 (2): 129–138. https://doi.org/10.1061/(ASCE)CP.1943-5487.0000067.
Park, T., T. Kang, Y. Lee, and K. Seo. 2014. “Project cost estimation of national road in preliminary feasibility stage using BIM/GIS platform.” In Computing in Civil and Building Engineering, edited by R. I. Issa, and I. Flood, 423–430. Reston, VA: ASCE.
Parka, C. S., D. Y. Lee, O. S. Kwon, and X. Wang. 2013. “A framework for proactive construction defect management using BIM, augmented reality and ontology-based data collection template.” Adv. Eng. Inf. 33: 61–71.
Parsons, R. L., and J. D. Frost. 2000. “Interactive analysis of spatial subsurface data using GIS-based tool.” Adv. Eng. Inf. 14 (4): 215–222.
Poku, S. E., and D. Arditi. 2006. “Construction scheduling and progress control using geographical information systems.” J. Comput. Civil Eng. 20 (5): 351–360. https://doi.org/10.1061/(ASCE)0887-3801(2006)20:5(351).
Rafiee, A., E. Dias, S. Fruijtier, and H. Scholten. 2014. “From BIM to geo-analysis: View coverage and shadow analysis by BIM/GIS integration.” Procedia Environ. Sci. 22: 397–402. https://doi.org/10.1016/j.proenv.2014.11.037.
Rikalovic, A., I. Cosic, and D. Lazarevic. 2014. “GIS based multi-criteria analysis for industrial site selection.” Procedia Eng. 69: 1054–1063. https://doi.org/10.1016/j.proeng.2014.03.090.
Rüppel, U., and K. Schatz. 2011. “Designing a BIM-based serious game for fire safety evacuation simulations.” Adv. Eng. Inf. 25 (4): 600–611. https://doi.org/10.1016/j.aei.2011.08.001.
Sanguinetti, P., S. Abdelmohsen, J. M. Lee, J. K. Lee, H. Shewarda, and C. Eastman. 2012. “General system architecture for BIM: An integrated approach for design and analysis.” Adv. Eng. Inf. 26 (2): 317–333. https://doi.org/10.1016/j.aei.2011.12.001.
Sani, M. J., and A. A. Rahman. 2018. “GIS and BIM integration at data level: A review.” In Int. Conf. on Geomatics and Geospatial Technology, 299–306. Hannover, Germany: Leibniz University, Institute of Photogrammetry and GeoInformation. Accessed December 6, 2020. https://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XLII-4-W9/299/2018/.
Sebastian, R., M. Böhms, and P. van den Helm. 2013. “BIM and GIS for low-disturbance construction.” In Proc., 13th Int. Conf. on Construction Applications of Virtual Reality, edited by N. Dawood, and M. Kassem, 469–479. Middlesbrough, UK: Teesside University. Accessed January 6, 2019. https://repository.tno.nl/islandora/object/uuid:1ed10694-572f-433c-95be-f726c7704086.
Seo, J., and S. Kang. 2006. “Geographic information system based roadway construction planning.” Can. J. Civ. Eng. 33 (5): 508–520. https://doi.org/10.1139/l05-126.
Sharma, S., and V. K. Bansal. 2018. “Location-based planning and scheduling of highway construction projects in hilly terrain using GIS.” Can. J. Civ. Eng. 45 (7): 570–582. https://doi.org/10.1139/cjce-2017-0359.
Shen, Z., and R. Issa. 2010. “Quantitative evaluation of the BIM-assisted construction detailed cost estimates.” J. Inf. Technol. Constr 15: 234–257.
Shin, J., H. S. Choi, and Y. C. You. 2020. “BIM/GIS platform-based seismic damage assessment system for building structures.” J. Korean Assoc. Spatial Struct. 20 (1): 18–22.
Singh, V., N. Gu, and X. Wang. 2011. “A theoretical framework of a BIM-based multidisciplinary collaboration platform.” Autom. Constr. 20 (2): 134–144. https://doi.org/10.1016/j.autcon.2010.09.011.
Song, Y., X. Wang, Y. Tan, P. Wu, M. Sutrisna, J. C. P. Cheng, and K. Hampson. 2017. “Trends and opportunities of BIM-GIS integration in the architecture, engineering and construction industry: A review from a spatio-temporal statistical perspective.” ISPRS Int. J. Geo-Inf. 6 (12): 397. https://doi.org/10.3390/ijgi6120397.
Sonmez, R., and F. Uysal. 2008. “Geographic information system–based visualization system for planning and monitoring of repetitive construction projects.” Can. J. Civ. Eng. 35 (11): 1342–1346. https://doi.org/10.1139/L08-083.
Su, X., A. R. Andoh, H. Cai, J. Pan, A. Kandil, and H. M. Said. 2012c. “GIS-based dynamic construction site material layout evaluation for building renovation projects.” Autom. Constr. 27: 40–49. https://doi.org/10.1016/j.autcon.2012.04.007.
Su, X., L. Zhang, A. R. Andoh, and H. Cai. 2012a. “GIS-based buffering for construction workspace management.” In Construction Research Congress 2012: Construction Challenges in a Flat World, edited by H. Cai, A. Kandil, M. Hastak, and P. S. Dunston, 1252–1261. Reston, VA: ASCE.
Su, X., L. Zhang, A. R. Andoh, and H. Cai. 2012b. “Formalizing the four-dimensional (4D) topology as the base for 4D analysis in construction planning.” In Construction Research Congress 2012: Construction Challenges in a Flat World, edited by H. Cai, A. Kandil, M. Hastak, and P. S. Dunston, 397–406. Reston, VA: ASCE.
Succar, B. 2009. “Building information modelling framework: A research and delivery foundation for industry stakeholders.” Autom. Constr. 18 (3): 357–375. https://doi.org/10.1016/j.autcon.2008.10.003.
Tomar, A., and V. K. Bansal. 2019. “Scheduling of repetitive construction projects using geographic information systems: An integration of critical path method and line of balance.” Asian J. Civ. Eng. 20 (4): 549–562. https://doi.org/10.1007/s42107-019-00123-3.
Tomar, A., and V. K. Bansal. 2020. “Generation, visualization, and evaluation schedule of repetitive construction projects using GIS.” Int. J. Constr. Manage.. https://doi.org/10.1080/15623599.2019.1683691.
Tsilimantou, E., E. T. Delegou, I. A. Nikitakos, C. Ioannidis, and A. Moropoulou. 2020. “GIS and BIM as integrated digital environments for modeling and monitoring of historic buildings.” Appl. Sci. 10 (3): 1078. https://doi.org/10.3390/app10031078.
Turkan, Y., F. Bosche, C. Haas, and R. Haas. 2012. “Automated progress tracking using 4D schedule and 3D sensing technologies.” Autom. Constr. 22: 414–421. https://doi.org/10.1016/j.autcon.2011.10.003.
Underwood, J., and U. Isikdag. 2010. Handbook of research on building information modeling and construction informatics: Concepts and technologies. Hershey, NY: Information Science Reference.
Vacca, G., and E. Quaquero. 2020. “BIM-3D GIS: An integrated system for the knowledge process of the buildings.” J. Spatial Sci. 65 (2): 193–208. https://doi.org/10.1080/14498596.2019.1601600.
Varghese, K., and J. T. O’Connor. 1995. “Routing large vehicles on industrial construction sites.” J. Constr. Eng. Manage. 121 (1): 1–12. https://doi.org/10.1061/(ASCE)0733-9364(1995)121:1(1).
Volk, R., J. Stengel, and F. Schultmann. 2014. “Building information modeling (BIM) for existing buildings—Literature review and future needs.” Autom. Constr. 38: 109–127. https://doi.org/10.1016/j.autcon.2013.10.023.
Wang, H., Y. Pan, and X. Luo. 2019. “Integration of BIM and GIS in sustainable built environment: A review and bibliometric analysis.” Autom. Constr. 103: 41–52. https://doi.org/10.1016/j.autcon.2019.03.005.
Wang, N., K. Wei, and H. Sun. 2014. “Whole life project management approach to sustainability.” J. Manage. Eng. 30 (2): 246–255. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000185.
Wang, T., T. Krijnen, and B. de Vries. 2016. “Combining GIS and BIM for facility reuse: A profiling approach.” Res. Urbanism Ser. 4 (1): 185–204.
Welle, B., Z. Rogers, and M. Fischer. 2012. “BIM-centric daylight profiler for simulation (BDP4SIM): A methodology for automated product model decomposition and recomposition for climate-based daylighting simulation.” Build. Environ. 58: 114–134. https://doi.org/10.1016/j.buildenv.2012.06.021.
Wong, J. K. W., and J. Zhou. 2015. “Enhancing environmental sustainability over building life cycles through green BIM: A review.” Autom. Constr. 57: 156–165. https://doi.org/10.1016/j.autcon.2015.06.003.
Wu, B., and S. Zhang. 2016. “Integration of GIS and BIM for indoor geovisual analytics.” In Proc., 23rd ISPRS Congress, 455–458. Göttingen, Germany: Copernicus GmbH.
Wu, W., X. Yang, and Q. Fan. 2014. “GIS-BIM based virtual facility energy assessment (VFEA) -framework development and use case of California State University, Fresno.” In Computing in Civil and Building Engineering, edited by R. I. Issa, and I. Flood, 339–346. Reston, VA: ASCE.
Yeheyis, M., K. Hewage, M. S. Alam, C. Eskicioglu, and R. Sadiq. 2013. “An overview of construction and demolition waste management in Canada: A lifecycle analysis approach to sustainability.” Clean Technol. Environ. Policy 15 (1): 81–91. https://doi.org/10.1007/s10098-012-0481-6.
Youn, J., T. W. Kang, H. S. Choi, and C. Kim. 2014. “Derivation of BIM/GIS platform application scenarios and definition of specific functions in construction planning and design.” J. Korea Academia-Ind. Cooperation Soc. 15 (12): 7340–7349. https://doi.org/10.5762/KAIS.2014.15.12.7340.
Zerger, A., and D. I. Smith. 2003. “Impediments to using GIS for real-time disaster decision support.” Comput. Environ. Urban Syst. 27 (2): 123–141. https://doi.org/10.1016/S0198-9715(01)00021-7.
Zhang, J. P., and Z. Z. Hu. 2011a. “BIM- and 4D-based integrated solution of analysis and management for conflicts and structural safety problems during construction: 1. Principles and methodologies.” Autom. Constr. 20 (2): 55–166. https://doi.org/10.1016/j.autcon.2010.09.013.
Zhang, J. P., and Z. Z. Hu. 2011b. “BIM- and 4D-based integrated solution of analysis and management for conflicts and structural safety problems during construction: 2. Development and site trials.” Autom. Constr. 20 (2): 167–180. https://doi.org/10.1016/j.autcon.2010.09.014.
Zhang, X., Y. Arayici, S. Wu, C. Abbott, and G. F. Aouad. 2009. “Integrating BIM and GIS for large-scale facilities asset management: A critical review.” In Proc., 12th Int. Conf. on Civil, Structural and Environmental Engineering Computing. 1–15, Manchester, UK: University of Salford. Accessed June 21, 2019. http://usir.salford.ac.uk/id/eprint/11418/2/Integrating_GIS_and_BIM_for_large_scale_asset_management.docx.pdf.
Zhong, D., J. Li, H. Zhu, and L. Song. 2004. “Geographic information system-based visual simulation methodology and its application in concrete dam construction processes.” J. Constr. Eng. Manage. 130 (5): 742–750. https://doi.org/10.1061/(ASCE)0733-9364(2004)130:5(742).
Zhou, W., J. Whyte, and R. Sacks. 2012. “Construction safety and digital design: A review.” Autom. Constr. 22: 102–111. https://doi.org/10.1016/j.autcon.2011.07.005.
Zhu, J., Y. Tan, X. Wang, and P. Wu. 2021. “BIM/GIS integration for web GIS-based bridge management.” Ann. Gis 27 (1): 99–109. https://doi.org/10.1080/19475683.2020.1743355.
Zhu, J., X. Wang, M. Chen, P. Wu, and M. J. Kim. 2019. “Integration of BIM and GIS: Geometry from IFC to shapefile using open-source technology.” Autom. Constr. 102: 105–119. https://doi.org/10.1016/j.autcon.2019.02.014.
Zhu, J., G. Wright, J. Wang, and X. Wang. 2018. “A critical review of the integration of geographic information system and building information modelling at the data level.” ISPRS Int. J. Geo-Inf. 7 (2): 66. https://doi.org/10.3390/ijgi7020066.
Zou, Y., A. Kiviniemi, and S. W. Jones. 2017. “A review of risk management through BIM and BIM-related technologies.” Saf. Sci. 97: 88–98. https://doi.org/10.1016/j.ssci.2015.12.027.

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Journal of Architectural Engineering
Volume 27Issue 4December 2021

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Received: Oct 3, 2020
Accepted: May 26, 2021
Published online: Jul 16, 2021
Published in print: Dec 1, 2021
Discussion open until: Dec 16, 2021

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Associate Professor, Dept. of Civil Engineering, National Institute of Technology (NIT), Hamirpur, Himachal Pradesh 177005, India. ORCID: https://orcid.org/0000-0001-5745-1310. Email: [email protected]; [email protected]

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