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FAST REACTOR CORE SEISMIC ANALYSIS FOR VERIFICATION OF ASSESSMENT MODEL OF CONTROL ROD

机译:控制杆评估模型验证的快速反应堆芯地震分析

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The control rod guide tube self-stands on the core support plate. The control rod is inserted in the control rod guide tube, and the control rod hangs from the upper structure of the reactor. At scrum in case of an earthquake, the control rod is detached and it sits on the seating structure in the control rod guide tube (Fig.1). In a vertical earthquake, the control rod guide tube is raised from the core support plate, and the control rod is also raised from the control rod guide tube. Therefore, drawing out may arise. During the earthquake after scrum, the rising behavior is different from the other core elements because the control rod and the control rod guide tube rise interfering each other. The control rod guide tube is raised more easily than the fuel assembly by the vertical differential pressure of the core during operation, because the control rod guide tube is lighter than the fuel assembly. Therefore, it is necessary to restrain the rising of the control rod guide tube. The sleeve dashpot structure, in which a sleeve is attached on the upper surface of the receptacle tube, is employed. Moreover, the control rod guide tube is equipped with the control rod dashpot in order to restrain the rising displacement of the control rod. This paper summarizes the analysis method of the rising behavior of the single control rod guide tube and the rising behavior of the control rod and the control guide tube after the control rod is inserted.
机译:控制杆导管自立在芯子支撑板上。将控制杆插入控制杆导管中,并且控制杆从反应器的上部结构悬挂。发生地震时,在发生混乱时,控制杆会分离,并位于控制杆导管中的底座结构上(图1)。在垂直地震中,控制杆导管从铁心支撑板上抬起,控制杆也从控制杆导管上抬起。因此,可能会出现拉长现象。在震后地震期间,由于控制杆和控制杆导管的上升相互干扰,因此其上升行为与其他核心要素不同。在操作过程中,由于芯棒的垂直压差,控制杆导管比燃料组件更容易升高,因为控制杆导管比燃料组件轻。因此,必须限制控制杆导管的上升。采用套筒防喷器结构,其中套筒附接在接收管的上表面上。此外,控制杆导管配备有控制杆阻尼器,以限制控制杆的上升位移。本文总结了单根控制杆导管的上升行为以及插入控制杆后控制杆和控制导管的上升行为的分析方法。

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