Optimizing Flow Process Through Synchronisation of Cycle Time

P. Pandey, Somil Agrawal, J. Maheswari
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Abstract

Construction projects can be modelled, using TFV theory of lean construction, as combination of main activity network that are primarily transformations and feeding flow processes which supply input material to main activities. These feeding processes may include one or more sub-processes/ and operations with varying cycle time (C/T). The lack of synchronization between these sub processes/ operations results into construction bottlenecks which delay the execution of main activities. Mechanization of few processes/ sub-processes or operations in isolation create large variation in cycle time and shifts the location of bottlenecks. Thus, limited benefits accrue from mechanization, automation, etc. The present study proposes a framework to locate the bottlenecks through hierarchical process analysis and discrete event simulation. These bottlenecks can be eliminated through modifying cycle time of selected sub process /operation by changing resources allocation and by eliminating waste with the ultimate aim to enhance overall productivity. The proposed framework is demonstrated utilizing data from an automated railway track construction project. The substantial improvement in construction productivity was observed after synchronization of cycle time.
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通过周期时间同步优化流程
利用精益建设的ttfv理论,可以将建设项目建模为主要活动网络的组合,主要活动网络是转换和为主要活动提供输入材料的馈流过程。这些加料过程可能包括一个或多个子过程和具有不同周期时间(C/T)的操作。这些子过程/操作之间缺乏同步导致构建瓶颈,从而延迟了主要活动的执行。少数过程/子过程或孤立操作的机械化造成了周期时间的巨大变化,并改变了瓶颈的位置。因此,机械化、自动化等带来的效益有限。本研究提出了一个通过分层过程分析和离散事件模拟来定位瓶颈的框架。可以通过改变资源分配和消除浪费来修改所选子过程/操作的周期时间,从而消除这些瓶颈,最终目标是提高整体生产率。利用自动化铁路轨道建设项目的数据对所提出的框架进行了验证。周期时间同步后,施工效率显著提高。
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