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Evolving Principle Based Fuzzy Inherently Safer Design Index (FISDI) for ISD Assessment, Case Study for Acetic Acid Production Plant

机译:基于演化原理的模糊固有安全设计指数(FISDI)用于ISD评估,醋酸生产厂的案例研究

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Inherently Safer Design (ISD) is served as an important and crucial step for Industrial Safety Management Systems. It is simpler, cheaper, and more efficient to eliminate and/or reduce inherent hazards. However, uncertainty, relativity, ambiguousness and quality/quantity transformations disrupt the implementation of ISD. As advantages of fuzzy reasoning, naming problems can be resolved in order to have a justified and sophisticated decision making about Inherently Safer Design Assessment. Accordingly in this paper, ISD four principles: 1.Elimination/Substitution, 2.Minimization, 3.Moderation and 4.Simplification enter the Fuzzy Mamdani system: Fuzzy ISD Index (FISDI) to accomplish Fuzzy Inherently Safer Design Assessment. Inputs and output of the FISDI range from 0 to 100 and are categorized in 5 triangular membership functions. The proposed FISDI is applied for acetic acid production unit. The unit is divided into 7 zones, the 4 principle based checklist is provided for each zone and the FISDI is computed for each zone, then the total FISDI is computed for the unit. The results show that the minimum, maximum and total FISDIs equal to 29, 72 and 45.1 correspondingly. The total plant FISDI data is compared to the classic ISDI. The cross validation accomplished via CFtool in MatLab presents the mean slope of 0.7181 and mean R2=0.7885 which is a justified curve fitting within the scope of the study philosophy_70% of the ISD. The FISDI mainly underestimates the aggregative ISDI. It is noted that the most conformed and the least conformed zone cross validations are determined as Zone 4 and Zone 7 respectively.
机译:本质上更安全的设计(ISD)是工业安全管理系统的重要步骤。消除和/或减少内在的危害更简单,更便宜,更有效。但是,不确定性,相对性,模棱两可以及质量/数量转换干扰了ISD的实施。作为模糊推理的优势,可以解决命名问题,以便对固有安全设计评估做出合理而复杂的决策。因此,ISD遵循以下四个原则:1.消除/替代; 2.最小化; 3.调节; 4.简化进入Fuzzy Mamdani系统:Fuzzy ISD指数(FISDI)以完成Fuzzy本质安全设计评估。 FISDI的输入和输出范围是0到100,并分为5个三角隶属函数。拟议的FISDI用于乙酸生产装置。将该单元划分为7个区域,为每个区域提供4个基于原则的清单,并为每个区域计算FISDI,然后为该单元计算总FISDI。结果表明,最小,最大和总FISDI分别等于29、72和45.1。将工厂的FISDI总数据与经典ISDI进行比较。通过Matlab中的CFtool进行的交叉验证显示平均斜率为0.7181,平均R2 = 0.7885,这是研究哲学_ISD的70%范围内的合理曲线拟合。 FISDI主要低估了总体ISDI。注意,最一致和最不一致的区域交叉验证分别确定为区域4和区域7。

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