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Effect of Pressure Tube Radial Creep on Thermal Hydraulic Performance of Pressure Tube Type Nuclear Reactors

机译:压力管径向蠕变对压力管型核反应堆热液压性能的影响

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In pressure tube type nuclear reactors, the pressure tube is the pressure retaining component in the core and is subject to high pressure and temperature in addition to neutron flux. This causes the pressure tube to creep in radial as well as axial directions. Axial creep is generally taken care of by allowing axial movement of the pressure tube assembly. This paper discusses the effects of radial creep on thermal hydraulics in horizontal pressure tubes. Broadly, radial creep causes redistribution of coolant flow within the subchannels of a rod bundle. The redistribution with a significant flow bypass affects the thermal hydraulic conditions in the interior subchannels thereby influencing Critical Heat Flux (CHF) significantly. Often these variations are undesirable, leading to reduction in thermal margins. Thus there exists a permissible value of radial creep based on thermal margin considerations. The exact effects of pressure tube radial creep on thermal hydraulics, however, depend on various factors viz., local peaking factors, mode of coolant circulation in nuclear reactor (I.e., pumped circulation or natural circulation) etc. The paper also discusses the effects of various factors on the thermal hydraulic performance of pressure tube type nuclear reactors under crept conditions.
机译:在压力管式核反应堆中,压力管是芯中的压力保持部件,除了中子通量之外还经受高压和温度。这使得压力管在径向和轴向上蠕变。通常通过允许压力管组件的轴向移动来处理轴向蠕变。本文探讨了径向蠕变对水平压力管热液压的影响。广泛地,径向蠕变导致杆束的子信道内的冷却剂流量的重新分配。具有重要流动旁路的再分配影响内部子信道中的热液压条件,从而显着影响临界热通量(CHF)。通常这些变化是不希望的,导致热边缘减少。因此,基于热保证金考虑,存在径向蠕变的允许值。然而,压力管径向蠕变对热液压的确切效果取决于各种因素。,核反应器中的局部峰值因子,冷却剂循环模式(即泵送循环或自然循环)等。本文还讨论了效果裂口条件下压力管式核反应堆热液压性能的各种因素。

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