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Impact of Active Control on Passive Safety Response Characteristics of Sodium-Cooled Fast Reactors: Ⅰ-Theoretical Background

机译:主动控制对钠冷快堆被动安全响应特性的影响:Ⅰ理论背景

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The interaction of the active control system with passive safety behavior is investigated for sodium-cooled fast reactors. A claim often made of advanced reactors is that they are passively safe against unprotected upset events. In practice, such upset events are not analyzed in the context of the plant control system, but rather the analyses are performed without considering the normally programmed response of the control system (open-loop approach). This represents an oversimplification of the safety case. The issue of passive safety override arises since the control system commands actuators whose motions have safety consequences. Depending on the upset involving the control system (operator error, active control system failure, or inadvertent control system override), an actuator does not necessarily go in the same direction as needed for safety. So neglecting to account for control system action during an unprotected upset is nonconservative from a safety standpoint. It is important then, during the design of the plant, to consider the potential for the control system to work against the inherent and safe regulating effects of purposefully engineered temperature feedbacks.
机译:对钠冷快堆研究了主动控制系统与被动安全行为的相互作用。通常认为先进反应堆是被动安全的,可以防止无保护的翻车事件。在实践中,此类不正常事件不会在工厂控制系统的环境中进行分析,而是在不考虑控制系统正常编程响应的情况下进行分析(开环方法)。这表示安全情况的过度简化。由于控制系统命令执行器的动作会带来安全后果,因此出现了被动安全超控的问题。根据涉及控制系统的故障(操作员错误,主动控制系统故障或疏忽大意的控制系统超驰),执行器不一定会朝着安全所需的方向前进。因此,从安全的角度来看,在无保护的情况下忽略控制系统的动作是不保守的。因此,在设备设计期间,重要的是要考虑控制系统有可能克服故意设计的温度反馈的固有和安全调节作用。

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