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Analysis of nuclear fire safety by dynamic complex algorithm of fuzzy theory and system dynamics

机译:运用模糊理论和系统动力学的动态复杂算法分析核消防安全。

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The cognitive architecture is investigated for the disaster management in the nuclear accident site. The fire-based nuclear facility catastrophe is a very significant considerable factor in the aspect of the nuclear safety. There are simulation results as the graphs by each time step composing of the simulations of 3 factors of Fire Caution, Fire Control, and Personal Factor. Each graph shows the instability of the designed event. There is the simulation result for Instability of Fire Protection System. The highest value is 0.67584 in 56th year in which the system is very unstable in fire protections. In the graph, the later time part of the operations has higher values comparatively. This could be explained by the system aging of the plant. In the system dynamics (SD) method combined with fuzzy set algorithm, the tractable modeling is liable to be adapt to any kinds of situations in the NPPs. Needless to say, the complex algorithm could be usable in the cases of normal as well as emergency circumstances. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了认知架构,用于核事故现场的灾难管理。在核安全方面,基于火的核设施灾难是非常重要的重要因素。每个时间步都有仿真结果,这些仿真结果是对火灾警戒,火灾控制和个人因素这3个因素的模拟所组成的。每个图都显示了设计事件的不稳定性。有消防系统失稳的仿真结果。最高值是第56年的0.67584,其中该系统的防火功能非常不稳定。在图中,操作的较晚时间部分具有相对较高的值。这可以用工厂的系统老化来解释。在结合模糊集算法的系统动力学(SD)方法中,易于处理的建模易于适应核电厂的任何情况。不用说,复杂的算法在正常和紧急情况下都可以使用。 (C)2017 Elsevier Ltd.保留所有权利。

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