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Numerical Study of Fluid-Structure Interaction With Heat Transfer at Supercritical Pressure in a Fuel Rod Assembly

机译:燃料棒组件中超临界压力下流固耦合的流固耦合数值研究

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摘要

Irregular temperature profiles inside nuclear reactors cause the deformation of fuel rods. Due to difficulties in implementing this phenomenon, it is usually neglected in computational fluid dynamics (CFD) analyses. Thermoelasticity effect was analyzed in this study for a 7-rod test fuel assembly. The overall problem was simplified on both the fluid-dynamical and the structural side. Existing technology is capable of executing such analysis; although for reliable results, improvement in the mesh deformation algorithm is needed. The deflection proves to have a distinct impact on surface temperature in a limited area. To obtain reliable results, more thorough analysis regarding both domains is necessary.
机译:核反应堆内部温度曲线不规则会导致燃料棒变形。由于难以实现此现象,因此通常在计算流体动力学(CFD)分析中将其忽略。在这项研究中分析了7杆测试燃料组件的热弹性效应。总体问题在流体动力学和结构方面都得到了简化。现有技术能够执行这种分析;尽管为了获得可靠的结果,仍需要改进网格变形算法。挠度在有限的区域内对表面温度有明显的影响。为了获得可靠的结果,需要对两个域进行更彻底的分析。

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