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The Productivity Improvement for Steel Framing Work Efficiency by Work Sampling and 5-minute Rating Technique

  • Chang, SooWon (Department of Architectural Engineering, Ewha Womans University) ;
  • Yi, June-Seong (Department of Architectural Engineering, Ewha Womans University) ;
  • Son, JeongWook (Department of Architectural Engineering, Ewha Womans University)
  • Published : 2015.03.01

Abstract

This study presents the results of our analysis and recommendations for process and productivity improvements. The project studied consists of a 5-story research building, with a structure of steel frames supporting concrete slabs. The observations focused on the analysis of the overall erection and framing process. The methods used for the analysis consisted in intensive visits on site, where construction processes were observed in term of resources, activities, durations, materials' handling procedures, and technology used. Back to the office, authors used the information captured to model the different trades' activities, using work sampling and 5-minute rating technique. The work sampling provides insight into the activity, hence allowing for process improvements. The productivity of various trades is strongly dependent on the organization of the work process and work site conditions. Improving the productivity of the entire project or company is not possible until everyone is committed to improvement.

Keywords

References

  1. J. Adrian, "Construction Productivity: Measurement and Improvement", Stipes Publishing, pp.18-21, 2004.
  2. C. H. Oglesby, H. Parker, G. Howell, "Productivity Improvement in Construction", McGraw Hill, pp.180-185, 1989.
  3. B.S. Yoon, J.H. Yu, C.D. Kim, "The Analysis of Work Efficiency and Work Constraints by the Difference of Work Management Characteristics", Proceedings of KICEM, pp.437-451, 2009.
  4. B.R. Kang, K.S. Kim, I.J. Um, K.J. Koo, "Development of Labor Productivity Index for Steel Construction", Proceedings of KICEM, pp.353-357, 2004.
  5. Sawhney, A., A. Mund, and J. Marble. "Simulation of the structural steel erection process", in Proceedings of the 31st conference on Winter simulation: Simulation---a bridge to the future-Volume 2, Phoenix, AZ, USA, 1999.
  6. Beavers, J., J. Moore, and W. Schriver, "Steel erection fatalities in the construction industry". Journal of Construction Engineering and Management, vol.135, no.3, pp.227-234. 2009. https://doi.org/10.1061/(ASCE)0733-9364(2009)135:3(227)
  7. Aral, S., E. Brynjolfsson, and M. Van Alstyne, "Information, technology, and information worker productivity". Information Systems Research, vol.23, no.3-part-2, p.849-867. 2012. https://doi.org/10.1287/isre.1110.0408
  8. Han, S. and D.W. Halpin. "The use of simulation for productivity estimation based on multiple regression analysis". in Proceedings of the 37th conference on Winter simulation. Winter Simulation Conference, New York, NY, USA, 2005.
  9. Pan, N.-H., M.-L. Lee, and S.-Q. Chen, "Construction Material Supply Chain Process Analysis and Optimization", Journal of Civil Engineering and Management, vol.17, no.3, pp.357-370. 2011. https://doi.org/10.3846/13923730.2011.594221
  10. Kim, Y.-W., et al., "Environmental impacts comparison between onsite vs. prefabricated Just-In-Time (prefab-JIT) rebar supply in construction projects". Journal of Civil Engineering and Management, vol.19 no.5,pp. 647-655. 2013. https://doi.org/10.3846/13923730.2013.795186
  11. Seo, J.W. and H.H. Choi, "Risk-based safety impact assessment methodology for underground construction projects in Korea". Journal of construction engineering and management, vol.134, no.1, pp.72-81, 2008. https://doi.org/10.1061/(ASCE)0733-9364(2008)134:1(72)
  12. Kartam, N., I. Flood, and P. Koushki, "Construction safety in Kuwait: issues, procedures, problems, and recommendations". Safety Science, vol.36, no.3, pp.163-184, 2000. https://doi.org/10.1016/S0925-7535(00)00041-2
  13. Hyun, C., et al., "The Development of Probabilistic Time and Cost Data: Focus on field conditions and labor productivity". KICEM Journal of Construction Engineering and Project Management, vol.1, no.1, pp.37-43, 2011.
  14. Dom, N.M., N. Kasim, and A. Shamsudin, Factors Influencing Human Resource Planning (HRP) for Local Workforce Supply in Malaysian Construction Industry, KICEM Journal of Construction Engineering and Project Management, vol.2, no.1, pp.5-13, 2012. https://doi.org/10.6106/JCEPM.2012.2.1.005
  15. Nassar, K. and Hosny, O, "A Model for Assessing Maximum Overtime Rate in Labor Subcontracting Practices", KICEM Journal of Construction Engineering and Project Management, vol.2, no.2, pp.18-27, 2012. https://doi.org/10.6106/JCEPM.2012.2.2.018
  16. Hajji, A.M. and P. Lewis, "Development of productivity-based estimating tool for energy and air emissions from earthwork construction activities", Smart and Sustainable Built Environment, vol.2, no.1, pp.84-100, 2013. https://doi.org/10.1108/20466091311325863
  17. Kwon, S., et al., A Modified-AHP Method of Productivity Analysis for Deployment of Innovative Construction Tools on Construction Site, KICEM Journal of Construction Engineering and Project Management, vol.4, no.1, pp.45-50, 2014. https://doi.org/10.6106/JCEPM.2014.4.1.045
  18. G. Howell, G. Ballard, "Implementing Lean Construction Understanding and Action", 1998.
  19. Bossink, B. and H. Brouwers, "Construction waste: quantification and source evaluation", Journal of Construction Engineering, vol.122, no.1, pp.55-60, 1996. https://doi.org/10.1061/(ASCE)0733-9364(1996)122:1(55)
  20. Poon, C.-S., A.T. Yu, and L. Jaillon, "Reducing building waste at construction sites in Hong Kong". Construction Management and Economics, vol.22, no.5, pp.461-470, 2004. https://doi.org/10.1080/0144619042000202816
  21. D. Garrett, L. Lee, "Lean Construction Submittal Process.", Quality Engineering, Taylor & Francis, vol.23, pp.84-93, 2011.
  22. Rojas, E. and Aramvareekul, P. "Labor Productivity Drivers and Opportunities in the Construction Industry." Journal of Management in Engineering, vol.19, no.2, pp.78-82, 2003. https://doi.org/10.1061/(ASCE)0742-597X(2003)19:2(78)
  23. Christian, J., and Hachey, D. "Effects of delay times on production rates in construction", Journal of Construction Engineering and Management. vol.121, no.1, pp.20-26, 1995. https://doi.org/10.1061/(ASCE)0733-9364(1995)121:1(20)
  24. Thomas, H. R., Sanvido, V. E., and Sanders, S. R. "Impact of material management on productivity-a case study". Journal of Construction Engineering and Management. vol.115, no.3, pp.370-384, 1989. https://doi.org/10.1061/(ASCE)0733-9364(1989)115:3(370)
  25. Khanh, H.D. and S.Y. Kim, "Practitioners' Perception on Relationship between Production Planning and Waste Occurrence in Construction Projects", KICEM Journal of Construction Engineering and Project Management, vol.4, no.3, pp.1-12, 2014.

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