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Power Profile Reconstruction and Anomaly Detection Approach for FHRs Using Cerenkov Radiation

机译:使用Cerenkov辐射的FHRS重建重建与异常检测方法

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The optical properties of FLiBe salt in a Fluoride-Salt-Cooled High-Temperature Reactor (FHR) present an opportunity to utilize Cerenkov radiation measurements to reconstruct the power profile in the core and detect various anomalies that could occur during operation. The Cerenkov light produced within a coolant channel is strongly correlated to the fission rate density and power level in the surrounding fuel assembly and travels freely through the optically transparent salt. The light coming from coolant channels can be measured by an array of photon detectors above the channels or a system of mirrors and light guides to a detector. This allows the assembly-level power profile in the core to be reconstructed, identifying hot spots within the core. By comparing the levels of light detected to a baseline operating state, anomalies can be detected as well as their location within the core. The method has been developed and assessed computationally to realize this approach for FHRs. Details of the method and demonstrations of its applications are discussed in this paper.
机译:氟化物 - 冷却的高温反应器(FHR)中的烤盐的光学性质具有利用Cerenkov辐射测量的机会来重建核心中的功率曲线并检测在操作期间可能发生的各种异常。在冷却剂通道内产生的Cerenkov光与周围燃料组件中的裂变速率密度和功率水平强烈相关,并且通过光学透明的盐自由行进。来自冷却剂通道的光可以通过通道上方的光子探测器阵列或镜子和光导阵的阵列测量到检测器。这允许重建核心中的组装级功率分布,识别核心内的热点。通过比较检测到到基线运行状态的光水平,可以检测异常以及它们在核心内的位置。该方法已经在计算上进行了开发和评估,以实现FHRS的这种方法。本文讨论了其应用方法和示范的细节。

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