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Productivity Analysis of Lateral CIPP Rehabilitation Process Using Simphony Simulation Modeling

机译:基于Simphony仿真建模的CIPP侧向修复过程生产力分析。

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One of the challenges of the construction planning stage is selecting an appropriate construction setup, such as crew and equipment conformation, for a project. It is essential to choose a suitable method that can save time and avoid significant disruptions in the area, especially for projects in urban settings. Management must consider various resource (crew and equipment) combinations, calculate the associated time and construction productivity for each scenario, and determine the most desirable solution. In this research, a simulation-based approach was used to assist decision makers in choosing the best crew and equipment combination for lateral rehabilitation using cured-in-place pipe (CIPP) from the main line, also called lateral relining process using main and lateral cured-in-place liner (MLCIPL). The simulation model enables users to simulate for different resource compositions and calculate resource utilization and total duration of the project. The results' comparison is demonstrated in this paper. This paper also suggests an amendment in the installation sequence to improve the construction productivity, which was developed from the results of this model. (C) 2017 American Society of Civil Engineers.
机译:施工计划阶段的挑战之一是为项目选择合适的施工设置,例如船员和设备配置。选择一种可以节省时间并避免对该区域造成重大干扰的合适方法至关重要,尤其是对于城市环境中的项目而言。管理层必须考虑各种资源(机组人员和设备)的组合,为每种情况计算相关的时间和建筑生产率,并确定最理想的解决方案。在这项研究中,基于模拟的方法用于协助决策者从干线上使用现场固化管(CIPP)选择最佳的船员和设备组合进行侧向修复,也称为使用主侧管和侧管的侧向衬砌工艺就地固化衬板(MLCIPL)。仿真模型使用户可以仿真不同的资源组成,并计算资源利用率和项目的总工期。本文对结果进行了比较。本文还建议对安装顺序进行修正,以提高建筑生产率,这是根据该模型的结果得出的。 (C)2017年美国土木工程师学会。

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