TY - CONF TI - Investigating the Relationship Between Labor Productivity and Work-in-Process Buffers: A Case Study AU - Gonzalez, Luis AU - Gonzalez, Vicente AU - Miller, Garry AD - Undergraduate Student, Construction Engineering School, Universidad de Valparaiso, Chile. E-Mail: luis.gonzalez@uv.cl AD - PhD, Lecturer, Department of Civil and Environmental Engineering, The University of Auckland, New Zealand. E-Mail: v.gonzalez@auckland.ac.nz AD - Professional Teaching Fellow, Department of Civil and Environmental Engineering, The University of Auckland, New Zealand. E-Mail: g.miller@auckland.ac.nz ED - Rooke, John ED - Dave, Bhargav PY - 2011 DA - 2011/07/13 T2 - 19th Annual Conference of the International Group for Lean Construction C3 - 19th Annual Conference of the International Group for Lean Construction CY - Lima, Peru AB - In the last two decades, buffer-driven production strategies have been an emerging issue among lean construction researchers and practitioners alike. However, an in-depth understanding about the extent to which buffers impact system performance is still limited in construction, reducing the potential of using them to improve performance. To overcome this, the relationship between task-level labor productivity and buffer levels in a repetitive building project is investigated. In this research, a specific kind of inventory buffer is studied: work-in-process (WIP). A specific process was selected and analyzed in-detail as a case study to understand this relationship. The main result of this research indicates, through a linear regression, that an improvement in task-level labor productivity may be achieved when WIP buffer sizes greater than the size proposed by the lean ideal or the industry practice. However, this suggests a more in-depth investigation about the mechanisms operating in theory and practice in managing buffers in construction. Further research should focus on improving the analytical description of the relationship productivity/buffer on-site, as well as the understanding of the mechanisms at task and multiple task levels working in this relationship, and developing practical ways of using buffers to improve project-level performance. KW - Buffers KW - Labor Productivity KW - Work-In-Process KW - Performance. L1 - https://www.iglc.net/papers/details/1143/pdf UR - https://www.iglc.net/papers/details/1143 DB - IGLC.net LA - English N1 - Export date: 04 October 2026 ER -