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Inherently safer design of a reactor network system: A case study

机译:固有地更安全的反应堆网络系统设计:案例研究

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The strategies of Inherently Safer Design (ISD) provide a conceptual approach in order to design equipment and processes with substantially improved safety level. However, this may lead to a less economically attractive design. This study aimed to obtain optimal decision parameters of a reactor network system to produce allyl chloride. The objective functions were the risk level, including the severity and the frequency of the accidents, which were associated with the hazards in the network and the economic profit of the process. Based on this optimization approach, an array of optimal solutions (called Pareto front) was obtained as a trade-off between the objectives under investigation. A final design point was ultimately selected using Shannon's entropy and Bellman-Zadeh's techniques of decision making in a fuzzy environment. Results showed that the optimum reactor network leads to a highly complex system and more process control difficulties. This result was inconsistent with the simplification strategy of Inherently Safer design. In order to deal with this problem, a sensitivity analysis was performed that yielded a decision guide to decide about the desirable level of the risk as well as the optimum design.
机译:固有的更安全设计(ISD)的策略提供了一种概念方法,以便设计具有显着提高安全水平的设备和过程。然而,这可能导致不太经济的设计设计。本研究旨在获得反应堆网络系统的最佳决策参数以产生烯丙基氯化物。目标职能是风险水平,包括事故的严重程度和频率,与网络的危害和流程的经济利润相关。基于这种优化方法,获得了一系列最佳解决方案(称为Pareto Front)作为调查目标之间的折衷。最终使用Shannon的熵和Bellman-Zadeh在模糊环境中的决策技术选择最终设计点。结果表明,最优反应器网络导致高度复杂的系统和更多过程控制困难。这种结果与固有更安全的设计的简化策略不一致。为了解决这个问题,进行了灵敏度分析,产生了决策指南,以决定风险的理想水平以及最佳设计。

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