BIM-enabled Kanban system in construction logistics for real-time demand reporting and pull replenishment

Author:

Zeng NingshuangORCID,Ye XulingORCID,Liu YanORCID,König MarkusORCID

Abstract

PurposeThe unstable labor productivity and periodic planning method cause barriers to improving construction logistics management. This paper aims to explore a demand-driven mechanism for efficient construction logistics planning to record the material consumption, report the real-time demand and trigger material replenishment from off-site to on-site, which is aided by Building Information Modeling (BIM) and the Kanban technique.Design/methodology/approachThis paper follows the design science research (DSR) principles to propose a system of designing and applying Kanban batch with 4D BIM for construction logistics planning and monitoring. Prototype development with comparative simulation experiments of a river remediation project is conducted to analyze the conventional and Kanban-triggered supply. Two-staged industrial interviews are conducted to guide and evaluate the system design.FindingsThe proposed BIM-enabled Kanban system enables construction managers and suppliers to better set integrated on- and off-site targets, report real-time demands and conduct collaborative planning and monitoring. The simulation results present significant site storage and schedule savings applying the BIM-enabled Kanban system. Feedback and constructive suggestions from practitioners are collected via interviews and analyzed for further development.Originality/valueThis paper brings to the limelight the benefits of implementing BIM-enabled demand-driven replenishment to remove waste from the material flow. This paper combines lean production theory with advanced information technology to solve construction logistics management problems.

Publisher

Emerald

Subject

General Business, Management and Accounting,Building and Construction,Architecture,Civil and Structural Engineering

Reference65 articles.

1. Analysis of interacting uncertainties in on-site and off-site activities: implications for hybrid construction;International Journal of Project Management,2016

2. The last planner system of production control,2000

3. Lean management methods for complex projects;Engineering Project Organization Journal,2012

4. Interdependence in supply chains and projects in construction;Supply Chain Management: An International Journal,2010

5. Site logistics planning and control for engineer-to-order prefabricated building systems using BIM 4D modeling;Automation in Construction,2019

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