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Presenting a Model Based on Fuzzy Application to Optimize the Time of IBS Projects in Gas Refineries

机译:基于模糊应用的模型展示了优化天然气炼油厂IBS项目的时间

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Nowadays, the construction industry has started to embrace IBS as a method of attaining better construction quality and productivity and reducing risks related to occupational safety and health. The built of pre-fabricated component in factories reduces many problems related to lack of purposing uncertainty in scheduling calculation and time management of projects. In the case of using IBS method for managing time in projects, former studies such as Allan Tay’s research, indicates that this method can save up at least 29% of overall completion period versus the conventional method. But beside mentioned advantages of this technical method, the projects could be optimized more and more in scheduling calculations. This issue is critical in gas refineries, since special parameters such as risk of spreading poison H2S gas and mandatory of performing projects in short time period events such as maintenance overhauls demands to perform projects in optimum time. Custom scheduling calculation of project planning uses the Critical Path Method (CPM) as a tool for Planning Project’s activities. The researches of this paper’s authors indicated that Fuzzy Critical Path Method (FCPM) is the best technique to manage the uncertainty in project scheduling and can save up the construction project’s time versus the custom methods. This paper aims to present a model based on fuzzy application in CPM calculations to optimize the time of Industrial Building System.
机译:如今,建筑业已开始将IBS接受作为实现更好的施工质量和生产率的方法,并降低与职业安全和健康有关的风险。建造的工厂中的预制作组件减少了许多与缺乏缺乏缺点的项目,在调度计算和时间管理方面缺乏缺点的不确定性。在使用IBS方法的情况下,在项目中管理时间,艾伦泰的研究等前研究表明,该方法可以节省至少29%的整体完成期与传统方法。但除了提到这项技术方法的优势,项目可以越来越多地优化调度计算。这个问题对于气体炼油厂至关重要,因为特殊参数,如传播毒药H2S气体的风险,并且在短时间内的诸如维护超出的短时间内的项目中执行项目的强制性,以便在最佳时间内执行项目。预定调度计算项目规划使用关键路径方法(CPM)作为规划项目活动的工具。本文的作者的研究表明,模糊关键路径方法(FCPM)是管理项目调度中不确定性的最佳技术,可以节省建设项目的时间与自定义方法。本文旨在介绍基于CPM计算中的模糊应用的模型,以优化工业建筑系统的时间。

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