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Analysis of Liquid Zone Control Valve Oscillation Problem in CANDU Reactors

机译:CANDU反应堆液区控制阀振荡问题分析。

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This paper looks at the existing challenges with steady-state Liquid Zone control at some CANDU (CANada Deuterium Uranium) stations, where—contrary to expectations for equilibrium flow—Liquid Zone Control Valve oscillations have proven to be a chronic, unanticipated challenge. Currently, the exact causes of this behaviour are not fully understood, although it is confirmed that the Control Valve oscillations are not due to automatic power adjustment requests or zone level changes due to process leaks. This phenomenon was analysed based on a case study of one domestic nuclear power station to determine whether it could be attributed to inherent controller properties. Next, a proposal is made in an attempt to improve current performance with minimal changes to the existing system hardware and logic using conventional technologies. Finally, a proposal was made to consider Model Predictive Control-based technology to minimize the undesirable Control Valve oscillations at steady state based on the obtained simulation results and discussion of other available alternatives.
机译:本文着眼于某些CANDU(加拿大氘铀)站的稳态液区控制所面临的挑战,与平衡流量的预期相反,液位控制阀的振荡已被证明是一项长期而未曾预料到的挑战。目前,尽管已确认控制阀的振荡不是由于自动功率调节请求或过程泄漏引起的区域级别变化引起的,但尚未完全了解此行为的确切原因。基于对一个家用核电站的案例研究,对该现象进行了分析,以确定是否可以将其归因于固有的控制器特性。接下来,提出了一种尝试,以在使用常规技术对现有系统硬件和逻辑进行最小改动的情况下,提高当前性能。最后,基于所获得的仿真结果和对其他可用替代方案的讨论,提出了一种考虑基于模型预测控制的技术以最小化稳态下不期望的控制阀振荡的建议。

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