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A Mathematical Model of Radiation-Induced Shape Change in Fuel Subassemblies of the BN-Type Reactor Core and Its Implementation in the ANSYS Software Package

机译:BN型反应堆堆芯燃料组件中辐射引起的形状变化的数学模型及其在ANSYS软件包中的实现

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One of the main operability criteria for fuel subassemblies (FSAs) in sodium-cooled fast reactor cores, i.e., the criterion of tolerable shape change in the hexagonal wrapper tube, is formulated. The equations that enable one to investigate the kinetics of the stress-strain state of a three-dimensional body have been adapted to operating conditions of the FSAs. A mathematical model of radiation-induced shape change in ferritic-martensitic EP-450 grade steel is proposed. With regard to the proposed model and data on the radiation-induced shape change in other currently used and prospective BN reactor core structural materials, blocks for recording radiation-induced swelling and radiation-induced creep were developed for the ANSYS software package, which made it possible to utilize its potential in this area. The test case with the proposed models of the radiation-induced swelling and creep demonstrates that the developed blocks describe sufficiently well the radiation-induced shape change in the examined structural materials exposed to radiation. Calculation of the radiation-induced shape change in the FSA hexagonal wrapper tube has been performed at various radiation-induced swelling rates and radiation-induced creep moduli. The calculated results and the results of post-irradiation inspection of the FSA dimensions are compared. Recommendations for use of the proposed models designed to calculate and estimate the radiation-induced shape change and define the stress-strain state of the FSAs are made.
机译:制定了钠冷快堆堆芯燃料组件(FSA)的主要可操作性标准之一,即六角形包裹管中可容许的形状变化标准。使人们能够研究三维物体应力应变状态动力学的方程式已经适应了FSA的工作条件。提出了铁素体-马氏体EP-450级钢辐射诱发形变的数学模型。关于拟议的其他目前使用的和预期的BN反应堆堆芯结构材料中辐射引起的形状变化的模型和数据,为ANSYS软件包开发了用于记录辐射引起的溶胀和辐射引起的蠕变的模块,从而使其成为可能。有可能在此领域发挥其潜力。所提出的辐射诱发的膨胀和蠕变模型的测试案例表明,所开发的模块充分良好地描述了受辐射的受检结构材料中辐射诱发的形状变化。在各种辐射引起的溶胀率和辐射引起的蠕变模量下,对FSA六角形包裹管中的辐射引起的形状变化进行了计算。比较计算结果和FSA尺寸的辐照后检查结果。提出了使用拟议模型的建议,这些模型旨在计算和估计辐射引起的形状变化并定义FSA的应力应变状态。

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