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Research Article

Exploring Lean Practices’ Importance in Sustainable Supply Chain Management Trends: An Empirical Study in Canadian Construction Industry

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References

  • Abdirad, M., & Krishnan, K. (2021). Industry 4.0 in logistics and supply chain management: A systematic literature review. Engineering Management Journal, 33(3), 187–201. https://doi.org/10.1080/10429247.2020.1783935
  • Abioye, S. O., Oyedele, L. O., Akanbi, L., Ajayi, A., Delgado, J. M. D., Bilal, M., Ahmed, A., & Ahmed, A. (2021). Artificial intelligence in the construction industry: A review of present status, opportunities and future challenges. Journal of Building Engineering, 44, Article 103299. https://doi.org/10.1016/j.jobe.2021.103299
  • Akkermans, H. A., Bogerd, P., Yücesan, E., & Van Wassenhove, L. N. (2003). The impact of ERP on supply chain management: Exploratory findings from a European Delphi study. European Journal of Operational Research, 146(2), 284–301. https://doi.org/10.1016/S0377-2217(02)00550-7
  • Alamdari, A. M., Jabarzadeh, Y., Adams, B., Samson, D., & Khanmohammadi, S. (2022). An analytic network process model to prioritize supply chain risks in green residential megaprojects. Operations Management Research. https://doi.org/10.1007/s12063-022-00288-2
  • Al-Aomar, R. (2012). Analysis of lean construction practices at Abu Dhabi construction industry. Lean Construction Journal, 105–121. http://lean-construction-gcs.storage.googleapis.com/wp-content/uploads/2022/08/08154124/LCJ_12_006.pdf
  • Al-Aomar, R., & Setijono, D. (2012). A lean construction framework with Six Sigma rating. International Journal of Lean Six Sigma, 3(4), 299–314. https://doi.org/10.1108/20401461211284761
  • AlSehaimi, A. O., Fazenda, P. T., & Koskela, L. (2014). Improving construction management practice with the last planner system: A case study. Engineering, Construction and Architectural Management, 21(1), 51–64. https://doi.org/10.1108/ECAM-03-2012-0032
  • Amirghodsi, S., Bonyadi Naeini, A., & Roozbehani, B. (2020). An integrated Shannon-PAF method on gray numbers to rank technology transfer strategies. Engineering Management Journal, 32(3), 186–207. https://doi.org/10.1080/10429247.2020.1738879
  • Andersen, B., Belay, A. M., & Seim, E. A. (2012). Lean construction practices and its effects: A case at St Olav’s integrated hospital, Norway. Lean Construction Journal. https://leanconstruction.org/uploads/wp/media/docs/lcj/2012/LCJ_12_003.pdf
  • Ansah, R. H., & Sorooshian, S. (2017). Effect of lean tools to control external environment risks of construction projects. Sustainable Cities and Society, 32, 348–356. https://doi.org/10.1016/j.scs.2017.03.027
  • Arashpour, M., Bai, Y., Aranda-Mena, G., Bab-Hadiashar, A., Hosseini, R., & Kalutara, P. (2017). Optimizing decisions in advanced manufacturing of prefabricated products: Theorizing supply chain configurations in off-site construction. Automation in Construction, 84, 146–153. https://doi.org/10.1016/j.autcon.2017.08.032
  • Ashenbaum, B., Blair, C. W., & Brewer, B. (2020). The influence of the competitive landscape on cross-functional interactions between procurement and engineering. Journal of Purchasing and Supply Management, 26(1), Article 100595. https://doi.org/10.1016/j.pursup.2019.100595
  • Aslam, M., Gao, Z., & Smith, G. (2020). Development of innovative Integrated Last Planner System (ILPS). International Journal of Civil Engineering, 18(6), 701–715. https://doi.org/10.1007/s40999-020-00504-9
  • Aslam, M., Gao, Z., & Smith, G. (2022). Framework for selection of lean construction tools based on lean objectives and functionalities. International Journal of Construction Management, 22(8), 1559–1570. https://doi.org/10.1080/15623599.2020.1729933
  • Athapaththu, K. I., & Karunasena, G. (2018). Framework for sustainable construction practices in Sri Lanka. Built Environment Project and Asset Management, 8(1), 51–63. https://doi.org/10.1108/BEPAM-11-2016-0060
  • Aziz, F. R., & Hafez, M. S. (2013). Applying lean thinking in construction and performance improvement. Alexandria Engineering Journal, 52(4), 679–695. https://doi.org/10.1016/j.aej.2013.04.008
  • Babalola, O., Ibem, E. O., & Ezema, I. C. (2019). Implementation of lean practices in the construction industry: A systematic review. Building and Management, 148, 34–43. https://doi.org/10.1016/j.buildenv.2018.10.051
  • Birasnav, M., & Bienstock, J. (2019). Supply chain integration, advanced manufacturing technology, and strategic leadership: An empirical study. Computers & Industrial Engineering, 130, 142–157. https://doi.org/10.1016/j.cie.2019.01.021
  • Booth, C. A., Hammond, F. N., Lamond, J., & Proverbs, D. G. (2012). Solutions for climate change challenges in the built environment. John Wiley & Sons.
  • Bos, A., Kemper, B., & de Waal, V. (2014). A study on how to improve the throughput time of Lean Six Sigma projects in a construction company. International Journal of Lean Six Sigma, 5(2), 212–226. https://doi.org/10.1108/IJLSS-10-2013-0055
  • Brammer, S., & Walker, H. (2011). Sustainable procurement in the public sector: An international comparative study. International Journal of Operations & Production Management, 31(4), 452–476. https://doi.org/10.1108/01443571111119551
  • Carvajal-Arango, D., Bahamón-Jaramillo, S., Aristizábal-Monsalve, P., Vásquez-Hernández, A., & Botero, L. F. B. (2019). Relationships between lean and sustainable construction: Positive impacts of lean practices over sustainability during construction phase. Journal of Cleaner Production, 234, 1322–1337. https://doi.org/10.1016/j.jclepro.2019.05.216
  • Carvalho, A. C. V., Granja, A. D., & Da Silva, V. G. (2017). A systematic literature review on integrative lean and sustainability synergies over a building’s lifecycle. Sustainability, 9(7), Article 1156. https://doi.org/10.3390/su9071156
  • Carvalho, J. P., Bragança, L., & Mateus, R. (2021). Sustainable building design: Analysing the feasibility of BIM platforms to support practical building sustainability assessment. Computers in Industry, 127, Article 103400. https://doi.org/10.1016/j.compind.2021.103400
  • Chileshe, N., Rameezdeen, R., Hosseini, M. R., & Lehmann, S. (2015). Barriers to implementing reverse logistics in South Australian construction organisations. Supply Chain Management: An International Journal, 20(2), 179–204. https://doi.org/10.1108/SCM-10-2014-0325
  • Dallasega, P., & Rauch, E. (2017). Sustainable construction supply chains through synchronized production planning and control in engineer-to-order enterprises. Sustainability, 9(10), Article 1888. https://doi.org/10.3390/su9101888
  • Demir, S., Gunduz, M. A., Kayikci, Y., & Paksoy, T. (2022). Readiness and maturity of smart and sustainable supply chains: A model proposal. Engineering Management Journal, 1–26. https://doi.org/10.1080/10429247.2022.2050129
  • Demirkesen, S., & Bayhan, H. G. (2020). A lean implementation success model for the construction industry. Engineering Management Journal, 32(3), 219–239. https://doi.org/10.1080/10429247.2020.1764834
  • Dobrosavljević, A., & Urošević, S. (2022). Research of the influence of CSR dimensions integration in business processes on the reduction of the employee turnover in apparel industry organizations using AHP and TOPSIS methods. Engineering Management Journal, 34(3), 394–405. https://doi.org/10.1080/10429247.2021.1940043
  • Elbeltagi, E., Wefki, H., Abdrabou, S., Dawood, M., & Ramzy, A. (2017). Visualized strategy for predicting buildings energy consumption during early design stage using parametric analysis. Journal of Building Engineering, 13, 127–136. https://doi.org/10.1016/j.jobe.2017.07.012
  • Eriksen, M. H., Bjarløv, S. P., & Rode, C. (2017). Strengthening requirement specification in sustainable procurement–an investigation of challenges. Journal of Green Building, 12(1), 107–122. https://doi.org/10.3992/1552-6100.12.1.107
  • Erol, H., Dikmen, I., & Birgonul, T. M. (2017). Measuring the impact of lean construction practices on project duration and variability: A simulation-based study on residential buildings. Journal of Civil Engineering and Management, 23(2), 241–251. https://doi.org/10.3846/13923730.2015.1068846
  • García de Soto, B., Agustí-Juan, I., Joss, S., & Hunhevicz, J. (2022). Implications of construction 4.0 to the workforce and organizational structures. International Journal of Construction Management, 22(2), 205–217. https://doi.org/10.1080/15623599.2019.1616414
  • Geng, S., Hou, H., & Yang, J. (2022). A hybrid decision support model for deploying humanitarian operations to respond to earthquakes. Engineering Management Journal, 34(4), 705–717. https://doi.org/10.1080/10429247.2022.2027206
  • Goel, A., Ganesh, L. S., & Kaur, A. (2019). Sustainability integration in the management of construction projects: A morphological analysis of over two decades’ research literature. Journal of Cleaner Production, 236, Article 117676. https://doi.org/10.1016/j.jclepro.2019.117676
  • Gracht, H. A. (2012). Consensus measurement in Delphi studies: Review and implications for future quality assurance. Technological Forecasting and Social Change, 79(8), 1525–1536. https://doi.org/10.1016/j.techfore.2012.04.013
  • Gunasekara, K., Perera, S., Hardie, M., & Jin, X. (2021). A contractor-centric construction performance model using non-price measures. Buildings, 11(8), Article 375. https://doi.org/10.3390/buildings11080375
  • Hall, D. M., Whyte, J. K., & Lessing, J. (2020). Mirror-breaking strategies to enable digital manufacturing in silicon valley construction firms: A comparative case study. Construction Management and Economics, 38(4), 322–339. https://doi.org/10.1080/01446193.2019.1656814
  • Hammad, A. W. A., Akbarnezhad, A., & Rey, D. (2016). A multi-objective mixed integer nonlinear programming model for construction site layout planning to minimise noise pollution and transport costs. Automation in Construction, 61, 73–85. https://doi.org/10.1016/j.autcon.2015.10.010
  • Ho, D., Kumar, A., & Shiwakoti, N. (2019). A literature review of supply chain collaboration mechanisms and their impact on performance. Engineering Management Journal, 31(1), 47–68. https://doi.org/10.1080/10429247.2019.1565625
  • Holton, I., Glass, J., & Price, A. D. F. (2010). Managing for sustainability: Findings from four company case studies in the UK precast concrete industry. Journal of Cleaner Production, 18(2), 152–160. https://doi.org/10.1016/j.jclepro.2009.09.016
  • Hosseini, M. R., Rameezdeen, R., Chileshe, N., & Lehmann, S. (2015). Reverse logistics in the construction industry. Waste Management & Research, 33(6), 499–514. https://doi.org/10.1177/0734242X15584842
  • Im, K. S., Han, S. H., Koo, B., & Jung, D. Y. (2009). Formulation of a pull production system for optimal inventory control of temporary rebar assembly plants. Canadian Journal of Civil Engineering, 36(9), 1444–1458. https://doi.org/10.1139/L09-072
  • Jamil, A. H., & Fathi, M. S. (2016). The integration of lean construction and sustainable construction: A stakeholder perspective in analyzing sustainable lean construction strategies in Malaysia. Procedia computer science, 100, 634–643. https://doi.org/10.1016/j.procs.2016.09.205
  • Johansen, E., & Walter, L. (2007). Lean construction: Prospects for the German construction industry. Lean Construction Journal, 3(1), 19–32. https://nrl.northumbria.ac.uk/id/eprint/1746/1/LCJ_06_003.pdf
  • Kannan, V. R., & Tan, K. C. (2005). Just in time, total quality management, and supply chain management: Understanding their linkages and impact on business performance. Omega, 33(2), 153–162. https://doi.org/10.1016/j.omega.2004.03.012
  • Karakhan, A. A., & Gambatese, J. A. (2017). Integrating worker health and safety into sustainable design and construction: Designer and constructor perspectives. Journal of Construction Engineering and Management, 143(9), Article 04017069. https://doi.org/10.1061/(ASCE)CO.1943-7862.0001379
  • Kesidou, S., & Sovacool, B. K. (2019). Supply chain integration for low-carbon buildings: A critical interdisciplinary review. Renewable and Sustainable Energy Reviews, 113, Article 109274. https://doi.org/10.1016/j.rser.2019.109274
  • Khanzadi, M., Sheikhkhoshkar, M., & Banihashemi, S. (2020). BIM applications toward key performance indicators of construction projects in Iran. International Journal of Construction Management, 20(4), 305–320. https://doi.org/10.1080/15623599.2018.1484852
  • Khodeir, L. M., & Othman, R. (2018). Examining the interaction between lean and sustainability principles in the management process of AEC industry. Ain Shams Engineering Journal, 9(4), 1627–1634. https://doi.org/10.1016/j.asej.2016.12.005
  • Kibert, C. J. (2016). Sustainable construction: Green building design and delivery. John Wiley & Sons.
  • Kosanoglu, F., & Kus, H. T. (2021). Sustainable supply chain management in construction industry: A Turkish case. Clean Technologies and Environmental Policy, 23(9), 2589–2613. https://doi.org/10.1007/s10098-021-02175-z
  • Koskela, L., Howell, G., Ballard, G., & Tommelein, I. (2002). The foundations of lean construction. In R. Best & G. de Valence (Eds.), Design and construction: building in value (1st ed., pp. 211–226). Routledge. https://doi.org/10.4324/9780080491080
  • Kylili, A., & Fokaides, P. A. (2017). Policy trends for the sustainability assessment of construction materials: A review. Sustainable Cities and Society, 35, 280–288. https://doi.org/10.1016/j.scs.2017.08.013
  • Le, P. L., Jarroudi, I., Dao, T. M., & Chaabane, A. (2021). Integrated construction supply chain: An optimal decision-making model with third-party logistics partnership. Construction Management and Economics, 39(2), 133–155. https://doi.org/10.1080/01446193.2020.1831037
  • Le, P. L., & Nguyen, N. T. D. (2022). Prospect of lean practices towards construction supply chain management trends. International Journal of Lean Six Sigma, 13(3), 557–593. https://doi.org/10.1108/IJLSS-06-2020-0071
  • Li, S., Wu, X., Zhou, Y., & Liu, X. (2017). A study on the evaluation of implementation level of lean construction in two Chinese firms. Renewable and Sustainable Energy Reviews, 71, 846–851. https://doi.org/10.1016/j.rser.2016.12.112
  • Liang, S. Y., Putuhena, F. J., Ling, L. P., & Baharun, A. (2014). Towards implementation and achievement of construction and environmental quality in the Malaysian construction industry. Malaysian Journal of Civil Engineering, 26(1), 99–114. https://doi.org/10.11113/mjce.v26.15879
  • Linstone, H. A., & Turoff, M. (1975). The Delphi method, techniques and applications. Addison-Wesley Reading.
  • Liu, J., & Lu, M. (2018). Constraint programming approach to optimizing project schedules under material logistics and crew availability constraints. Journal of Construction Engineering and Management, 144(7), Article 04018049. https://doi.org/10.1061/(ASCE)CO.1943-7862.0001507
  • Liu, Z., Chen, K., Peh, L., & Tan, K. W. (2017). A feasibility study of building information modeling for green mark new non-residential building (NRB): 2015 analysis. Energy Procedia, 143, 80–87. https://doi.org/10.1016/j.egypro.2017.12.651
  • Maltese, S., Tagliabue, L. C., Cecconi, F. R., Pasini, D., Manfren, M., & Ciribini, A. L. C. (2017). Sustainability assessment through green BIM for environmental, social and economic efficiency. Procedia Engineering, 180, 520–530. https://doi.org/10.1016/j.proeng.2017.04.211
  • Mangla, S. K., Kumar, P., & Barua, M. K. (2015). Risk analysis in green supply chain using fuzzy AHP approach: A case study. Resources Conservation and Recycling, 104, 375–390. https://doi.org/10.1016/j.resconrec.2015.01.001
  • Meehan, J., & Bryde, D. J. (2015). A field-level examination of the adoption of sustainable procurement in the social housing sector. International Journal of Operations & Production Management, 35(7), 982–1004. https://doi.org/10.1108/IJOPM-07-2014-0359
  • Mofidi, A., Tompa, E., Mortazavi, S. B., Esfahanipour, A., & Demers, P. A. (2020). A probabilistic approach for economic evaluation of occupational health and safety interventions: A case study of silica exposure reduction interventions in the construction sector. BMC Public Health, 20(1), Article 210. https://doi.org/10.1186/s12889-020-8307-7
  • Muhammad, W. M. N. W., Ismail, Z., & Hashim, A. E. (2013, April 7–9). Exploring lean construction components for Malaysian construction industry [Paper presentation]. 2013 IEEE Business Engineering and Industrial Applications Colloquium (BEIAC), Langkawi, Malaysia. https://ieeexplore.ieee.org/document/6560091.
  • Newaz, M. T., Ershadi, M., Jefferies, M., & Davis, P. (2021). Assessing safety management factors to develop a research agenda for the construction industry. Safety Science, 142, Article 105396. https://doi.org/10.1016/j.ssci.2021.105396
  • Nguyen, D. T., Adulyasak, Y., Cordeau, J. -F., & Ponce, S. I. (2022). Data-driven operations and supply chain management: Established research clusters from 2000 to early 2020. International Journal of Production Research, 60(17), 5407–5431. https://doi.org/10.1080/00207543.2021.1956695
  • Nguyen, D. T., Adulyasak, Y., & Landry, S. (2021). Research manuscript: The bullwhip effect in rule-based supply chain planning systems–a case-based simulation at a hard goods retailer. Omega, 98, Article 102121. https://doi.org/10.1016/j.omega.2019.102121
  • Nguyen, D. T., & Le, P. L. (2022). Twenty-year application of logistics and supply chain management in the construction industry. Construction Management and Economics, 40(10), 796–834. https://doi.org/10.1080/01446193.2022.2110273
  • Ning, X., Ding, L. Y., Luo, H. B., & Qi, S. J. (2016). A multi-attribute model for construction site layout using intuitionistic fuzzy logic. Automation in Construction, 72, 380–387. https://doi.org/10.1016/j.autcon.2016.09.008
  • Ning, X., Lam, K. -C., & Lam, M.C. -K. (2010). Dynamic construction site layout planning using max-min ant system. Automation in Construction, 19(1), 55–65. https://doi.org/10.1016/j.autcon.2009.09.002
  • Nyikos, D. M., Thal, A. E., Hicks, M. J., & Leach, S. E. (2012). To LEED or not to LEED: Analysis of cost premiums associated with sustainable facility design. Engineering Management Journal, 24(4), 50–62. https://doi.org/10.1080/10429247.2012.11431955
  • Ofori, G. (2000). Greening the construction supply chain in Singapore. European Journal of Purchasing and Supply Management, 6(3), 195–206. https://doi.org/10.1016/S0969-7012(00)00015-0
  • Ogunbiyi, O. (2014). Implementation of the Lean Approach in Sustainable Construction: a Conceptual Framework [ Doctoral thesis]. University of Central Lancashire. http://clok.uclan.ac.uk/10563.
  • Oh, B. K., Choi, S. W., & Park, H. S. (2017). Influence of variations in CO2 emission data upon environmental impact of building construction. Journal of Cleaner Production, 140, 1194–1203. https://doi.org/10.1016/j.jclepro.2016.10.041
  • Okudan, O., Budayan, C., & Dikmen, I. (2021). A knowledge-based risk management tool for construction projects using case-based reasoning. Expert Systems with Applications, 173, Article 114776. https://doi.org/10.1016/j.eswa.2021.114776
  • Olivieri, H., Seppänen, O., & Granja, A. D. (2018). Improving workflow and resource usage in construction schedules through location-based management system (LBMS). Construction Management and Economics, 36(2), 109–124. https://doi.org/10.1080/01446193.2017.1410561
  • Perez, A. M., & Ghosh, S. (2018). Barriers faced by new-adopter of last planner system: A case study. Engineering, Construction and Architectural Management, 25(9), 1110–1126. https://doi.org/10.1108/ECAM-08-2017-0162
  • Pitt, M., Tucker, M., Riley, M., & Longden, J. (2009). Towards sustainable construction: Promotion and best practices. Construction Innovation, 9(2), 201–224. https://doi.org/10.1108/14714170910950830
  • Rahimi, M., & Ghezavati, V. (2018). Sustainable multi-period reverse logistics network design and plan- ning under uncertainty utilizing conditional value at risk (CVaR) for recycling construction and demolition waste. Journal of Cleaner Production, 172, 1567–1581. https://doi.org/10.1016/j.jclepro.2017.10.240
  • Rahman, A. H., Wang, C., & Lim, I. Y. W. (2012). Waste processing framework for non-value-adding activities using lean construction. Journal of Frontiers in Construction Management, 1(1), 8–13. http://www.academicpub.org/fce/paperInfo.aspx?ID=3
  • Ramani, P. V., & Ksd, L. K. L. (2021). Application of lean in construction using value stream mapping. Engineering, Construction and Architectural Management, 28(1), 216–228. https://doi.org/10.1108/ECAM-12-2018-0572
  • Rameezdeen, R., Chileshe, N., Hosseini, M. R., & Lehmann, S. (2016). A qualitative examination of major barriers in implementation of reverse logistics within the South Australian construction sector. International Journal of Construction Management, 16(3), 185–196. https://doi.org/10.1080/15623599.2015.1110275
  • Ramkumar, M., & Jenamani, M. (2015). Sustainability in supply chain through e-procurement—an assessment framework based on DANP and Liberatore score. IEEE Systems Journal, 9(4), 1554–1564. https://doi.org/10.1109/JSYST.2014.2336291
  • Rayens, M. K., & Hahn, E. J. (2000). Building consensus using the policy Delphi method. Policy, Politics & Nursing Practice, 1(4), 308–315. https://doi.org/10.1177/152715440000100409
  • Rocha, C. G., & Kemmer, S. (2018). Integrating product and process design in construction. Construction Management and Economics, 36(9), 535–543. https://doi.org/10.1080/01446193.2018.1464198
  • Rocha, C. G., Korb, S., & Sacks, R. (2022). Work structuring and product design for customized repetitive projects. Construction Management and Economics, 40(7–8), 526–547. https://doi.org/10.1080/01446193.2021.1936100
  • Roy, D., Malsane, S., & Samanta, P. K. (2018). Identification of critical challenges for adoption of integrated project delivery. Lean Construction Journal, 1–15. https://leanconstruction.org/uploads/wp/media/docs/lcj/2018/LCJ_17_007.pdf
  • Rybkowski, Z. K., Arroyo, P., & Parrish, K. (2022). Assessment of current target value design practices: Consistencies and inconsistencies of application. Construction Management and Economics, 40(7–8), 598–617. https://doi.org/10.1080/01446193.2022.2037146
  • Saaty, T. L. (1980). The analytic hierarchy process. McGraw‐Hill.
  • Salem, O., Solomon, J., Genaidy, A., & Luegring, M. (2005). Site implementation and assessment of lean. Lean Construction Journal, 2(2), 1–21. https://leanconstruction.org/uploads/wp/media/docs/lcj/V2_N2/LCJ_05_009.pdf
  • Salvatirerra, J. L., Alarcon, L. F., Lopez, A., & Valasquez, X. (2015, July 29–31). Lean diagnosis for Chilean construction industry: Towards more sustainable lean practices [Paper presentation]. 23rd Annual Conference of the International Groups for Lean Construction, Perth, Australia, 642–651.
  • Sarhan, J. G., Karim, S., Fawzia, A., & Karim, A. (2017). Lean construction implementation in the Saudi Arabian construction industry. Construction Economics and Building, 17(1), 46–69. https://doi.org/10.5130/AJCEB.v17i1.5098
  • Sarhan, S., Pasquire, C., Elnokaly, A., & Pretlove, S. (2019). Lean and sustainable construction: A systematic critical review of 25 years of IGLC research. Lean Construction Journal, 1–20. https://leanconstruction.org/uploads/wp/media/docs/lcj/2019/LCJ_19_004.pdf
  • Scala, N. M., & Pazour, J. A. (2016). A value model for asset tracking technology to support naval sea-based resupply. Engineering Management Journal, 28(2), 120–130. https://doi.org/10.1080/10429247.2016.1168502
  • Seppanem, O., Modrich, R., & Ballard, G. (2015, July 29–31). Integration of last planner system and location based management system [Paper presentation]. 23rd Annual Conference of the International Groups for Lean Construction, Perth, Australia, 123–132.
  • Shouke, C., Zhuobin, W., & Jie, L. (2010). Comprehensive evaluation for construction performance in concurrent engineering environment. International Journal of Project Management, 28(7), 708–718. https://doi.org/10.1016/j.ijproman.2009.11.004
  • Siebelink, S., Voordijk, J. T., & Adriaanse, A. (2018). Developing and testing a tool to evaluate BIM maturity: Sectoral analysis in the Dutch construction industry. Journal of Construction Engineering and Management, 144(8), Article 05018007. https://doi.org/10.1061/(ASCE)CO.1943-7862.0001527
  • Singh, A., Kumari, S., Malekpoor, H., & Mishra, N. (2018). Big data cloud computing framework for low carbon supplier selection in the beef supply chain. Journal of Cleaner Production, 202, 139–149. https://doi.org/10.1016/j.jclepro.2018.07.236
  • Solaimani, S., & Sedighi, M. (2020). Toward a holistic view on lean sustainable construction: A literature review. Journal of Cleaner Production, 248, Article 119213. https://doi.org/10.1016/j.jclepro.2019.119213
  • Tahmasebinia, F., Sepasgozar, S. M. E., Shirowzhan, S., Niemela, M., Tripp, A., Nagabhyrava, S., Mansuri, K. K. Z., & Alonso-Marroquin, F. (2020). Criteria development for sustainable construction manufacturing in construction industry 4.0. Construction Innovation, 20(3), 379–400. https://doi.org/10.1108/CI-10-2019-0103
  • Tamošaitienė, J., Sarvari, H., Cristofaro, M., & Chan, D. W. M. (2021). Identifying and prioritizing the selection criteria of appropriate repair and maintenance methods for commercial buildings. International Journal of Strategic Property Management, 25(5), 413–431. https://doi.org/10.3846/ijspm.2021.15225
  • Tan, Y., Shen, L., & Yao, H. (2011). Sustainable construction practice and contractors’ competitiveness: A preliminary study. Habitat International, 35(2), 225–230. https://doi.org/10.1016/j.habitatint.2010.09.008
  • Thyssen, M. H., Emmitt, S., Bonke, S., & Kirk-Christoffersen, A. (2010). Facilitating client value creation in the conceptual design phase of construction projects: A workshop approach. Architectural Engineering and Design Management, 6(1), 18–30. https://doi.org/10.3763/aedm.2008.0095
  • Tsai, F. M., Bui, T. D., Tseng, M. L., Ali, M. H., Lim, M. K., & Chiu, A. S. (2021). Sustainable supply chain management trends in world regions: A data-driven analysis. Resources Conservation and Recycling, 167, Article 105421. https://doi.org/10.1016/j.resconrec.2021.105421
  • Tsao, C. C. Y., Tommelein, I. D., Swanlund, E. S., & Howell, G. A. (2004). Work structuring to achieve integrated product-process design. Journal of Construction Engineering and Management, 130(6), 180–189. https://doi.org/10.1061/(ASCE)0733-9364(2004)130:6(780)
  • Verrier, B., Rose, B., & Caillaud, E. (2015). Lean and green strategy: The lean and green house and maturity deployment model. Journal of Cleaner Production, 116, 150–156. https://doi.org/10.1016/j.jclepro.2015.12.022
  • Wang, Z., Hu, H., & Gong, J. (2018). Simulation based multiple disturbances evaluation in the precast supply chain for improved disturbance prevention. Journal of Cleaner Production, 177, 232–244. https://doi.org/10.1016/j.jclepro.2017.12.188
  • Wen, M., Lin, J., Qian, Y., & Huang, W. (2021). Scheduling interrelated activities in complex projects under high-order rework: A DSM-based approach. Computers & Operations Research, 130, Article 105246. https://doi.org/10.1016/j.cor.2021.105246
  • Wernicke, B., Stehn, L., Sezer, A. A., & Thunberg, M. (2021). Introduction of a digital maturity assessment framework for construction site operations. International Journal of Construction Management, 1–11. https://doi.org/10.1080/15623599.2021.1943629
  • Whyte, J. (2019). How digital information transforms project delivery models. Project Management Journal, 50(2), 177–194. https://doi.org/10.1177/8756972818823304
  • Yazdani-Chamzini, A., & Yakhchali, S. H. (2012). Tunnel Boring Machine (TBM) selection using fuzzy multicriteria decision making methods. Tunnelling and Underground Space Technology, 30, 194–204. https://doi.org/10.1016/j.tust.2012.02.021
  • Yu, A. T. W., Yevu, S. K., & Nani, G. (2020). Towards an integration framework for promoting electronic procurement and sustainable procurement in the construction industry: A systematic literature review. Journal of Cleaner Production, 250, Article 119493. https://doi.org/10.1016/j.jclepro.2019.119493
  • Zeng, N., Liu, Y., Mao, C., & König, M. (2018). Investigating the relationship between construction supply chain integration and sustainable use of material: Evidence from China. Sustainability, 10(10), Article 3581. https://doi.org/10.3390/su10103581

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