Publications

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Author [ Title(Desc)] Type Year
C
Shokr, S. , Ahn, S. , Czerniawski, T. , Haas, C. T. , & Lee, S. Hyun. (2014). Current state of interface management in mega-construction projects. In Construction Research Congress 2014: Construction in a Global Network. Retrieved from https://doi.org/10.1061/9780784413517.230
Shokri, S. , Ahn, S. , Lee, S. , Haas, C. T. , & Haas, R. C. G. . (2016). Current status of interface management in construction: Drivers and effects of systematic interface management. Journal of Construction Engineering and Management, 142(2). Retrieved from https://doi.org/10.1061/(ASCE)CO.1943-7862.0001035
D
Razavi, S. N. , & Haas, C. . (2009). A data fusion model for location estimation in construction.‖. Proc, the International Symposium for Automation and Robotics in Construction (ISARC). Retrieved from https://www.researchgate.net/profile/Seyed-Naser-Razavi/publication/239594768_A_Data_Fusion_Model_for_Location_Estimation_in_Construction/links/5a15ca6c4585153b546cb278/A-Data-Fusion-Model-for-Location-Estimation-in-Construction.pdf
Shahi, A. , Safa, M. , Haas, C. T. , & West, J. S. . (2015). Data fusion process management for automated construction progress estimation. Journal of Computing in Civil Engineering, 29(6). Retrieved from https://doi.org/10.1061/(ASCE)CP.1943-5487.0000436
Shahandashti, S. Mohsen, Razavi, S. N. , Soibelman, L. , Berges, M. , Caldas, C. H. , Brilakis, I. , Teizer, J. , et al. (2011). Data-fusion approaches and applications for construction engineering. Journal of construction engineering and management, 137(10), 863-869. Retrieved from https://doi.org/10.1061/(ASCE)CO.1943-7862.0000287
Safa, M. , Reinsma, S. , Haas, C. T. , Goodrum, P. M. , & Caldas, C. H. . (2018). A decision-making method for choosing concrete forming systems. International Journal of Construction Management, 18(1), 53-64. Retrieved from https://doi.org/10.1080/15623599.2016.1253243 A-decision-making-method-for-choosing-concrete-forming-systems.pdf
Sanchez, B. , Rausch, C. , & Haas, C. . (2019). Deconstruction programming for adaptive reuse of buildings. Automation in Construction, 107. Retrieved from https://doi.org/10.1016/j.autcon.2019.102921
Shahi, S. , Esfahani, M. Esnaashary, Bachmann, C. , & Haas, C. . (2020). A definition framework for building adaptation projects. Sustainable Cities and Society, 63, 102345. Retrieved from https://doi.org/10.1016/j.scs.2020.102345
Rausch, C. , Lu, R. , Talebi, S. , & Haas, C. . (2021). Deploying 3D scanning based geometric digital twins during fabrication and assembly in offsite manufacturing. International Journal of Construction Management, 1-14. Retrieved from https://doi.org/10.1080/15623599.2021.1896942
Jeanclos, N. , Sharif, M. - M. , Li, S. Kun, Kwiatek, C. , & Haas, C. . (2018). Derivation of Minimum Required Model for Augmented Reality Based Stepwise Construction Assembly Control. In Workshop of the European Group for Intelligent Computing in Engineering (Vol. 10863, pp. 336-358). Springer, Cham. Retrieved from https://doi.org/10.1007/978-3-319-91635-4_18
Shahi, A. , Aryan, A. , West, J. S. , Haas, C. T. , & Haas, R. C. G. . (2012). Deterioration of UWB positioning during construction. Automation in Construction, 24, 72-80. Retrieved from https://doi.org/10.1016/j.autcon.2012.02.009
Chettupuzha, A. J. Antony, Haas, C. T. , Gray, J. , & Simonson, R. . (2013). DETERMINING CRITICAL CONSTRUCTION DOCUMENTS THROUGH KNOWLEDGE DISCOVERY. ISARC. Proceedings of the International Symposium on Automation and Robotics in Construction, 30(1). Retrieved from https://www.semanticscholar.org/paper/Determining-Critical-Construction-Documents-through-Chettupuzha-Haas/3bffdf7849dd1a36616666c031e3cb58d7766344?p2df
Nasir, H. , Haas, C. T. , Rankin, J. H. , Fayek, A. Robinson, Forgues, D. , & Ruwanpura, J. . (2012). Development and implementation of a benchmarking and metrics program for construction performance and productivity improvement. Canadian Journal of Civil Engineering, 39(9), 957-967. Retrieved from https://doi.org/10.1139/l2012-030
Nasir, H. , Haas, C. , Forgues, D. , Fayek, A. , Ruwanpura, J. , & Rankin, J. . (2012). Development and implementation of a benchmarking and metrics program for construction performance and productivity improvement. Canadian Journal of Civil Engineering 39 (9), pp. 957-967.
Nasir, H. , Haas, C. , Fayek, A. R. , Forgues, D. , Rankin, J. , & Ruwanpura, J. . (2011). Development and implementation of a construction performance and productivity benchmarking program, 3, 1896-1905. Retrieved from https://espace2.etsmtl.ca/id/eprint/4258/
Esfahani, M. Esnaashary, Rausch, C. , Haas, C. , & Adey, B. T. . (2020). Development of a Decision Making Methodology to Optimize the Process of Scope Definition Improvement: A Building Adaptive Reuse Case Study. In Construction Research Congress 2020: Project Management and Controls, Materials, and Contracts (pp. 330-338). American Society of Civil Engineers. Retrieved from https://doi.org/10.1061/9780784482889.035
Rehan, R. , Knight, M. A. , Unger, A. J. A. , & Haas, C. T. . (2013). Development of a system dynamics model for financially sustainable management of municipal watermain networks. Water research, 47(20), 7184-7205. Retrieved from https://doi.org/10.1016/j.watres.2013.09.061
Zhang, D. , Nasir, H. , & Haas, C. T. . (2017). Development of an internal benchmarking and metrics model for industrial construction enterprises for productivity improvement. Canadian Journal of Civil Engineering, 44(7), 518-529. Retrieved from https://scholar.google.ca/citations?hl=en&user=lmA9rO4AAAAJ&view_op=list_works&sortby=pubdate#d=gs_md_cita-d&u=%2Fcitations%3Fview_op%3Dview_citation%26hl%3Den%26user%3DlmA9rO4AAAAJ%26cstart%3D20%26pagesize%3D80%26sortby%3Dpubdate%26citation_for_view%3Dlm
Baiz, S. , Tighe, S. L. , Haas, C. T. , Mills, B. , & Perchanok, M. . (2008). Development of frost and thaw depth predictors for decision making about variable load restrictions. Transportation research record, 2053(1), 1-8. Retrieved from https://doi.org/10.3141%2F2053-01
Haas, C. . (2012). Device for powdering printed sheets in a printing press, and printing press with a powdering device. US Patent No. 13191957. Retrieved from https://patents.google.com/patent/US20120024175A1/en

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