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INTERPRETATION OF RIA TESTS. BUCKLING OF FUEL PLATES

机译:解读RIA测试。燃料板屈曲

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This paper presents an interpretation of transient experiments using a low enriched uranium silicide miniplate fuels prepared for the Japan Research Reactor-3. These tests were performed for the Nuclear Safety Research Reactor (NSRR) at Japan Atomic Energy Institute (JAERI). The miniplates are submitted to power pulses to simulate RIA accident. According to the deposited energy, a geometrical instability can be observed. In the first part of this paper, the methods by eigen modes and perturbation are presented in the framework of the study of a shell in thermal compression. In the second part a description of the tests will be performed. Different approaches to interpret these tests, using finite elements and an analytical approach will be presented. The first approach uses the Eigen modes. To take into account the geometrical defects of the plate, we propose to use a perturbation method. The defects are modelled using the first Eigen mode. These two approaches assume an elastic behaviour of the structure. To take into account of the plasticity, a perturbation method is used. The different experimental results, as the buckling temperature and the final shape of the plate, are found.
机译:本文介绍了使用为日本研究反应器-3准备的低富富铀硅化硅硅酸盐燃料的瞬态实验的解释。这些测试是在日本原子能研究所(JAERI)的核安全研究反应堆(NSRR)进行。密封率被提交给Power Puls,以模拟RIA事故。根据沉积能量,可以观察到几何不稳定性。在本文的第一部分中,eIGEN模式和扰动的方法在热压缩中的壳体研究的框架中提出。在第二部分中,将执行测试的描述。将介绍使用有限元和分析方法来解释这些测试的不同方法。第一种方法使用特征模式。要考虑板的几何缺陷,我们建议使用扰动方法。使用第一eIGEN模式建模缺陷。这两种方法假设结构的弹性行为。要考虑到可塑性,使用扰动方法。发现不同的实验结果,作为板的屈曲温度和弯曲的最终形状。

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