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The seismic analysis of the core structure in a pool-type material test reactor using 3-D finite difference method

机译:池式材料试验反应堆堆芯结构的三维有限差分地震分析

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The integrity of nuclear reactors under seismic conditions is one of the most important items of safety analyses. In order to keep the first barrier of radioactive materials and a safe emergency shutdown system under earthquake, the reactor components (particularly fuel elements) and the reactor control system must withstand against seismic loads without hazardous physical damage or failure. Among several qualification approaches of seismic analyses, the Finite Element Method (FEM) is the most common approach used in practical mechanical engineering problems. In this paper, a FEM is employed for detailed analyses; in which a 3-D homogenization model is chosen and used to study the overall static and dynamic behavior of Tehran Research reactor (TRR) core under seismic (level 2) excitations via 3-D visual effects of seismic stresses and damaged objects or displacement effects. Such visualization creates a unique sense of a realistic hazard. In this way, the ABAQUS software which is one of the leading applied FEM programs in the world are used for analyses. This software can easily and robustly solve dynamic, nonlinear, finite element models of structures. Two different kinds of seismic loading spectrum are used to cover and study a wide range of motivations and responses, conservatively. New safety assessment based on a 3-D accurate modeling and loading shows that the TRR core structures should be enhanced against severe seismic loads (particularly hard fast shocks recommended by the US NRC and IAEA) via dampers or any type of additional supports.
机译:地震条件下核反应堆的完整性是安全性分析中最重要的项目之一。为了在地震下保持放射性物质的第一道屏障和安全的紧急停车系统,反应堆组件(尤其是燃料元件)和反应堆控制系统必须承受地震载荷,而不会造成危险的物理损坏或故障。在几种地震分析鉴定方法中,有限元方法(FEM)是在实际机械工程问题中最常用的方法。本文采用有限元法进行详细分析。其中选择了3-D均质化模型,并通过地震应力和受损物体的3-D视觉效应或位移效应研究了德黑兰研究堆(TRR)芯在地震(第2级)激发下的整体静态和动态行为。这样的可视化创造了一种独特的现实危害感。这样,就使用了ABAQUS软件(它是全球领先的应用FEM程序之一)进行分析。该软件可以轻松,可靠地求解结构的动态,非线性,有限元模型。保守地使用两种不同的地震载荷谱来覆盖和研究各种动机和响应。基于3-D精确建模和载荷的新安全评估表明,应通过阻尼器或任何类型的附加支撑件来增强TRR核心结构的强度,以抵抗严重的地震载荷(尤其是美国NRC和IAEA建议的强硬冲击)。

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