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TEMPERATURE AND THERMAL STRESS DISTRIBUTIONS FOR THE HFIR PERMANENT REFLECTOR GENERATED BY NUCLEAR HEATING

机译:核加热产生的HFIR永久反射器的温度和热应力分布

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The beryllium permanent reflector of the High Flux Isotope Reactor has the main functions for slowing down and reflecting the neutrons and housing the experimental facilities. The reflector is heated as a result of the nuclear reaction. Heat is removed mainly by the cooling water passing through the densely distributed coolant holes along the vertical or axial direction of the reflector. The reflector neutronic distribution and its heating rate are calculated by J. C. Gehin of the Oak Ridge National Laboratory by applying the Monte Carlo Code MCNP. The heat transfer boundary conditions along several reflector interfaces are estimated to remove additional heat from the reflector. The present paper is to report the calculation results of the temperature and the thermal stress distributions of the permanent reflector by applying the computer aided design code I-DEAS and the finite element code ABAQUS. The present calculation is to estimate the high stress areas as a result of the new beam tube cutouts along the horizontal mid-plane of the reflector of the recent reactor upgrade project. These high stresses were not able to be calculated in the preliminary design analysis in earlier 60's. The heat transfer boundary conditions are used in this redesigned calculation. The material constants and the acceptance criteria for the allowable stresses are mainly based on that assumed in the preliminary design report.
机译:高通量同位素反应堆的铍永久反射器的主要功能是减慢和反射中子并容纳实验设备。由于核反应,反射器被加热。热量主要是通过冷却水沿着反射器的垂直或轴向方向穿过密集分布的冷却剂孔而带走的。反射器的中子分布及其加热速率是由橡树岭国家实验室的J. C. Gehin通过应用蒙特卡罗代码MCNP计算得出的。估计沿几个反射器界面的传热边界条件,以从反射器中去除额外的热量。本文将通过应用计算机辅助设计代码I-DEAS和有限元代码ABAQUS来报告永久反射器的温度和热应力分布的计算结果。当前的计算是为了估计高应力区域,这是由于最近的反应堆升级项目中沿反射镜的水平中平面的新束管切口所致。这些高应力无法在60年代初期的初步设计分析中计算出来。在重新设计的计算中使用了传热边界条件。允许应力的材料常数和验收标准主要基于初步设计报告中假设的材料。

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