Crane overlap and operational flexibility: balancing utilization, duration, and safety

Malak Al Hattab, E. Zankoul, Mohammad Barakat, F. Hamzeh
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引用次数: 19

Abstract

Purpose With tower cranes being the site hubs, thoroughly planning and managing their operations can result in better construction performance. As urban spaces become more constricted, overlapping working radii of tower cranes becomes inevitable. While project planners are concerned with safety hazards, research has not comprehensively addressed workload distribution and synchronization of overlapping cranes. Therefore, this study aims at exploring the impact of overlapping cranes, used on high-rise buildings, on operational flexibility which is the balance between schedule duration, crane utilization and safety. Design/methodology/approach A simulation model was developed and applied on a real project to analyze and compare the impacts of different overlap sizes. Seven scenarios of different overlap sizes, i.e. different number of tasks falling in the overlap space, were executed in the model; their results were plotted and analyzed. Findings The outcomes result from several compounded factors such as the experience of planners and crane operators, the sequencing of critical versus non-critical activities and the overall effort and care taken when planning operations of overlapping cranes. Increasing overlap size can be beneficial or unfavorable depending on how properly planners allocate overlapping cranes to workload demand, keeping in mind that there are certain trade-offs while achieving operational flexibility. Originality/value While project planners are concerned with safety hazards associated with crane overlaps, research has not been comprehensively nor proactively addressing the workload distribution and synchronization of overlapping crane processes. This study contributes to science by addressing the need to harness the flexibility in using overlapping tower cranes while minimizing the resulting interruptions and safety risks. This study sheds light on the potential benefits of allowing cranes to overlap while considering their collision free operations. Operational flexibility is seen as the balance between achieving shorter schedule durations and higher crane utilizations while maintaining collision free motion paths.
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起重机重叠和操作灵活性:平衡利用率,持续时间和安全性
目的塔式起重机作为工地枢纽,对塔式起重机的运行进行周密的规划和管理,可以提高施工效率。随着城市空间的日益狭窄,塔吊的工作半径重叠是不可避免的。虽然项目规划者关注的是安全隐患,但研究尚未全面解决重叠起重机的工作量分配和同步问题。因此,本研究旨在探讨高层建筑中使用的重叠起重机对作业灵活性的影响,即在工期、起重机利用率和安全性之间的平衡。设计/方法/方法建立仿真模型并应用于实际工程,分析和比较不同重叠尺寸的影响。模型中执行了七种不同重叠大小的场景,即落在重叠空间中的任务数量不同;他们的结果被绘制和分析。结果是由几个复杂的因素造成的,如规划人员和起重机操作员的经验,关键活动与非关键活动的顺序,以及在规划重叠起重机操作时所采取的总体努力和注意。增加重叠的大小可能是有利的,也可能是不利的,这取决于规划者如何正确地分配重叠的起重机以满足工作量需求,记住在实现操作灵活性的同时存在某些权衡。虽然项目规划者关注与起重机重叠相关的安全隐患,但研究尚未全面或主动地解决重叠起重机过程的工作量分配和同步问题。本研究通过解决在使用重叠塔吊时利用灵活性的需求,同时最大限度地减少由此导致的中断和安全风险,为科学做出了贡献。这项研究揭示了允许起重机重叠的潜在好处,同时考虑到它们的无碰撞操作。操作灵活性被视为在保持无碰撞运动路径的同时,实现更短的计划持续时间和更高的起重机利用率之间的平衡。
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