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Construction worker hoisting simulation for sky-lobby lifting system

机译:大堂吊装系统的建筑工人吊装模拟

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Effectively transporting construction workers to their workspaces located at height is crucial in high-rise building constructions because excessive hoisting time can lead to productivity loss and schedule delay. High-rise building constructions are characterized by a small number of hoisting equipment and a large amount of construction resources to be hoisted. Accordingly, a sky lobby system has been applied in high-rise building construction sites to increase the performance of lift systems. However, the performance of sky lobby systems can be significantly changed according to the configuration factors, such as the number of shuttle and local lift cars and the sky lobby floor location. Nevertheless, previous studies did not yet focus on the relationship between these factors and the performance of sky lobby systems. Therefore, we examined herein that relationship by using a discrete event simulation method. Through the simulation experiment, we found that the configuration parameters could have a significant influence on the system performance. The configuration parameters showed non-linear and complex patterns in the lifting performance, thereby making it difficult to find an effective configuration method to increase the performance of lift systems and even deteriorating the performance of lift systems in the commonly used range of configuration parameters. Therefore, the configuration parameters of the sky lobby system should be more carefully planned with quantitative methods before being applied to high-rise building constructions. (C) 2016 Elsevier B.V. All rights reserved.
机译:在高层建筑中,有效地将建筑工人运送到高处的工作场所至关重要,因为过多的吊装时间会导致生产力下降和进度延误。高层建筑结构的特点是吊装设备数量少,需要吊运大量建筑资源。因此,已经在高层建筑施工现场中应用了空中大堂系统,以提高电梯系统的性能。但是,空中走廊系统的性能可以根据配置因素(例如,班车和本地升降机的数量以及空中大厅楼层的位置)进行显着更改。然而,先前的研究尚未集中在这些因素与空中大堂系统性能之间的关系。因此,我们在这里通过使用离散事件模拟方法检查了这种关系。通过仿真实验,我们发现配置参数可能会对系统性能产生重大影响。配置参数在提升性能中显示出非线性和复杂的模式,因此难以找到一种有效的配置方法来提高电梯系统的性能,甚至在常用的配置参数范围内降低电梯系统的性能。因此,在应用于高层建筑之前,应使用定量方法更仔细地计划空中大厅系统的配置参数。 (C)2016 Elsevier B.V.保留所有权利。

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