钠冷快堆堆芯热梯度变形的数值与实验研究

Ma Zehua, Yingwei Wu, G. Su, W. Tian, S. Qiu
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引用次数: 4

摘要

在钠冷快堆(SFR)中,热梯度是组件瞬态弯曲的主要影响因素,它会引起反应性的巨大变化,加速包壳振动磨损,阻碍控制/关闭棒的运动,甚至威胁组件的完整性。然而,由于多组件接触和相互作用问题的复杂性,很难评估堆芯变形对反应堆性能安全的影响。为了研究岩心在热梯度作用下的变形行为,西安交通大学设计了岩心组件变形试验台(CADTF)进行一系列热弯曲试验。本文建立了有限元模型,模拟了不同平面对平面热梯度下单个装配件的力学响应。选择在CADTF中进行的单个装配约束弯曲试验对模型进行了验证。在该模型中,考虑了测量温度分布以及温度相关的弹塑性和热膨胀性能。为了保证模型的可靠性,通过调整负载垫片的摩擦系数来匹配计算和测量的接触力进行迭代计算。结果表明,装配体三维位移与实验数据吻合较好。因此,可以得出结论,该模型能够对SFR进行岩心变形分析。
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Numerical and Experimental Investigation on Core Assembly Thermal-Gradient-Induced Deformation of Sodium-Cooled Fast Reactor
In sodium-cooled fast reactor (SFR), thermal gradient is the paramount factor of assembly transient bowing, that may cause great reactivity change, accelerate wrapper vibration wear, hindering the motion of control/shutdown rods, or worse yet, threatening the integrity of assemblies. However, because of the complexity of multi-assembly contact and interaction problem, it is difficult to assess the impact of core deformation on reactor performance safety. The Core Assembly Deformation Test Facility (CADTF) is designed to perform a series of thermal bowing tests by Xi‘an Jiao Tong University (XJTU) to investigate the core deformation behaviors under thermal gradient. In this paper, a finite element model was established to simulate the mechanical response of single assembly under different flat-to-flat thermal gradient. The single assembly restrained bowing test performed in CADTF is chosen to validate the model. In the model, the measured temperature distribution as well as temperature-dependent elastoplastic and thermal expansion properties were taken into consideration. To ensure the model reliability, iterative computation is conducted by adjusting the friction coefficient of the load pads to match the calculated and measured contact force. According to the results, it can be seen that the three-dimensional displacement of assembly shows relatively good agreement with the experimental data. Therefore, it can be concluded that the model is capable of performing core deformation analysis for SFR.
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