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"Supply chain analysis and simulation modeling of the manufactured housing industry.", Ms. "Interactive and dynamic integrated module for mobile cranes supporting system design" Journal of Construction engineering and Management 136 (2), ASCE, 179-186. "Automated post-simulation visualization of modular building production assembly line." Automation in Construction 21, Elsevier, 229-236. thesis, Dept of civil and Environmental Engineering, University of Cincinnati. "A decision support system for manufactured housing production process planning and facility layout.", Ph D. "Simphony: An Environment for Building Special Purpose Construction Simulation Tools." Proceedings of the 1999 Winter Simulation Conference, Phoenix, AZ, 998-1006. "Integtrating 3D visualization and simulation for tower crane operations on construction site." Automation in Construction 15, Elsevier, 554-562. Al-Hussein Mohamed, Muhammad AtharNiaz, Haitao Yu, and Hyoungkwan Kim 2005B."Optimization algorithm for selection and on site location of mobile cranes." Journal of Construction Engineering and Management 131(5), ASCE, 579-590. Al-Hussein Mohamed, Sabah Alkass and Osama Moselhi 2005A."Simplifying simulation modeling through integration with 3D CAD.", Journal of Construction Engineering and Management 126(6), ASCE, 475-483. The 3D visualization model was provided for the construction team more than two months before the scheduled day of lifting, which assisted the contractor in selecting the optimum crane and successfully completing all lifts (thirty modules, 25 tons each) in just two working days. The case study involves construction of a four story, sixty-eight unit building for older adults in Westlock, AB, Canada. A case study-based approach is utilized to illustrate the proposed methodology. The proposed methodology provides to help lifting engineering and project manager select the best possible crane.
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The 3D visualization helps to identify collision free paths and optimize lifting activities based on optimal crane paths with cycle time and speed of each crane activity from simulation models in Simphony. This paper presents a methodology to aid practitioners in preparing lift studies with crane selection, positioning, and lift optimization using a 3D space. A 3D model allows users to visualize the construction process during a given period of the schedule.