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Experimental characterization of PCI impact on vibrating fuel rod under axial turbulent flow representative of JHR irradiation device ADELINE: Set-up conception and measurement method

机译:JHR辐射装置代表的轴向湍流下PCI对振动的燃料棒的冲击的实验表征ADELINE:设置概念和测量方法

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Mechanical loading originating due to Pellet- Cladding Interaction (PCI) in PWR nuclear fuel rod constitutes a first order importance phenomenon when attempting at increasing the flexibility o f n uclear r eactors o peration t o f ollow grid demand. The need to improve the understanding of such complex multi-physics phenomena motivates the realization of particular irradiation sequences carried out in highly instrumented devices located in Material Testing Reactors. Among this kind, ADELINE irradiation device is being developed and will be installed in the future Jules Horowitz Reactor. In the perspective of designing the adapted measurement methodology to detect and characterize PCI phenomenology during irradiation, we present in this paper the experimental bench and its associated measurement program, designed to investigate eventual effects of PCI on the non-linear, flow i nduced v ibrations o fuclear fuel r od. A nalytical and numerical models cannot predictively describe the system due to the complexity of phenomena thus the IMPIGRITIA experimental set-up has been developed to reproduce the mechanical interaction between the pellet and the clad at low pressure, room temperature and out of neutron flux. T he d esigned test bench presents a clamped free single short rod, centred in the test section by mean of four centring elements. Different rod configurations are implemented and localized closure of the gap is remotely realized by means of a dilatation system. Laser Doppler Vibrometry is used to measure the transversal displacement of the sample rod in three different conditions: in air, in stagnant water and under turbulent axial flow r ate. T he experimental program and expected results are presented and discussed
机译:试图提高核反应堆的灵活性以适应电网需求后,压水堆核燃料棒中的球壳相互作用(PCI)引起的机械载荷构成了重要的一级现象。需要提高对这种复杂的多物理现象的理解的需求促使实现在材料测试反应器中的高度仪器化的设备中执行的特定照射序列。其中,ADELINE辐照设备正在开发中,并将在未来的Jules Horowitz Reactor中安装。从设计适合的测量方法来检测和表征辐射过程中PCI现象学的角度来看,我们在本文中介绍了实验台及其相关的测量程序,旨在研究PCI对非线性,流动振动的最终影响o核燃料库。由于现象的复杂性,解析模型和数值模型无法预测性地描述该系统,因此已开发IMPIGRITIA实验装置以重现低压,室温和中子通量以外的颗粒与包层之间的机械相互作用。设计的测试台提供了一个夹紧的自由单根短杆,该杆通过四个定心元件在测试区域中定心。实施不同的杆配置,并通过扩张系统远程实现间隙的局部封闭。激光多普勒振动法用于在三种不同条件下测量样品杆的横向位移:在空气中,在死水中和在轴向湍流速率下。介绍并讨论了实验程序和预期结果

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