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Non Destructive Evaluation of Containment Walls in Nuclear Power Plants

机译:核电站安全壳壁的无损评估

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摘要

Two functions are regularly tested on the containment walls in order to anticipate a possible accident. The first is mechanical to resist at a possible internal over-pressure and the second is to prevent leakage. The reference accident LLOCA (Large Loss of Coolant Accident) is the rupture of a pipe in the primary circuit of a nuclear plant. In this case, the pressure and temperature can reach 5 bar and 180°C in 20 seconds.The national project ‘Non-destructive testing of the containment structures of nuclear plants’ aims at studying the non-destructive techniques capable to evaluate the concrete properties and its damaging or progression of cracks. This 4-year-project is segmented into two parts. The first consists in developing and selecting the most relevant NDEs (Non Destructive Evaluations) in the laboratory to reach these goals. These evaluations are developed in conditions representing the real conditions of the stresses generated during ten-yearly visits of the plants or those related to an accident. The second part consists in applying the selected techniques to two containment structures under pressure. The first (technique) is proposed by the ONERA (National Office for Aerospace Studies and Research of France) and the second is a mock-up of a containment wall on a 1/3 scale made by EDF (Electricity of France) within the VeRCoRs program.Communication bears on the part of the project that concerns the damaging and cracking follow-up. The tests are done in bending on 3 or 4 points in order to study the cracks’ generation, their propagation, as well as their opening and closing. The mostly ultrasonic techniques developed concern linear or non-linear acoustic: acoustic emission [1], LOCADIFF (Locating with diffuse ultrasound) [2], energy diffusion, surface waves velocity and attenuation, DAET (Dynamic Acousto-Elasticity Testing) [3]. The data contribute to providing the mapping of the parameters searched for, either in volume, in surface or globally. Image correlation is an important additional asset to validate the coherence of the data. The spatial normalization of the data allows proposing algorithms on the combination of the experimental data.The tests results are presented and they show the capacity and the limits of the evaluation of the volume, surface or global data. A data fusion procedure is associated with these results.
机译:定期在安全壳壁上测试两个功能,以预测可能发生的事故。第一个是机械的,可以抵抗可能的内部过压,第二个是防止泄漏。参考事故LLOCA(大的冷却液损失事故)是核电厂一次回路中的管道破裂。在这种情况下,压力和温度可以在20秒内达到5 bar和180°C。国家项目“核电站安全壳结构的无损检测”旨在研究能够评估混凝土性能的无损技术。以及其损坏或裂缝的发展。这个为期4年的项目分为两个部分。首先是开发和选择实验室中最相关的NDE(无损评估)以实现这些目标。这些评估是在代表工厂十年访问或与事故相关的访问期间所产生的压力的真实条件的条件下进行的。第二部分包括在压力下将选定的技术应用于两个安全壳结构。第一种(技术)是由ONERA(法国国家航空航天研究局)提出的,第二种是在VeRCoR内由EDF(法国电力)制造的1/3比例的密闭墙模型。程序涉及项目的破坏性和后续跟进工作。测试是在3或4个点上弯曲进行的,目的是研究裂纹的产生,扩展以及开合。所开发的大多数超声技术都涉及线性或非线性声学:声发射[1],LOCADIFF(使用散射超声定位)[2],能量扩散,表面波速度和衰减,DAET(动态声弹性测试)[3]。 。数据有助于提供所搜索参数的映射,无论是体积,表面还是全局。图像相关性是验证数据一致性的重要附加资产。数据的空间归一化允许对实验数据的组合提出算法。给出了测试结果,它们显示了评估体积,表面或全局数据的能力和限制。数据融合过程与这些结果相关。

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