首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >CFD SIMULATIONS TO DETERMINE THE EFFECTS OF DEFORMATIONS ON LIQUID METAL COOLED WIRE WRAPPED FUEL ASSEMBLIES
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CFD SIMULATIONS TO DETERMINE THE EFFECTS OF DEFORMATIONS ON LIQUID METAL COOLED WIRE WRAPPED FUEL ASSEMBLIES

机译:CFD模拟,以确定变形对液态金属冷却线包装燃料组件的影响

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Over the course of their lifespan, wire-wrapped liquid metal fast reactor (LMFR) fuel bundles deform due to tension of the pre-stressed wires, contact pressure between clad and adjacent rods' wires, thermal and irradiation clad creep, irradiation-caused swelling and fuel burnup. This deformation is geometrically complex, because it is the result of multiple effects, most of which do not arise until after burnup. This deformation affects both the axial flow areas and the crossflow mass fluxes, which have an effect on the subchannel outlet temperatures - a limiting parameter in many LMFRs. This paper aims to identify and quantify the effects of deformations on the heat transport in LMFR fuel assemblies. To achieve this, a 19-pin and a 127-pin hexagonal wire-wrapped fuel bundles are simulated in nominal and deformed geometries, using deformations of varying fidelity. A thorough CAD deformation algorithm is developed and presented; this algorithm generates a realistic solid model of a deformed LMFR fuel bundle, with a deformation shape similar to shapes observed experimentally. This algorithm is applied to the 19-pin bundle. The results of the simulations of the 19-pin bundle, together with its CAD deformation algorithm, are used to develop a methodology that core designers could use to quantify the hot channel penalty factors due to bundle deformation with a set of CAD and CFD codes. The CFD-based hot subchannel deformation penalty factor quantification methodology was tested by applying it to the 19-pin bundle experiment. For this benchmark, the penalty factor was evaluated to be 5.8%. Additional results presented in the paper include a study of the effects of deformations on the outlet fluid temperatures in both the 19-pin and the 127-pin assemblies.
机译:在其寿命过程中,绕丝液态金属快中子反应堆(LMFR)燃料棒束变形由于预应力金属丝的张力,包层和相邻的杆线,热和照射包覆蠕变之间的接触压力,辐射引起的肿胀和燃料燃耗。这种变形是几何形状复杂,因为它的多重功效,不会出现其中大部分直到燃耗后的结果。这种变形会影响轴向流动区域和横流质量通量,这对子信道出口温度的效果 - 在许多LMFRs一个限制参数。本文旨在鉴定和定量在LMFR燃料组件的热输送变形的影响。为了实现这一点,一个19针和一个127引脚六边形绕丝燃料棒束被模拟在标称和变形的几何形状,使用不同保真度的变形。彻底CAD变形算法的开发和呈现;该算法生成一个变形LMFR燃料棒束的一个现实的实体模型,具有类似于实验上观察到的形状变形的形状。该算法被施加到19针束。的19针束的模拟的结果,其CAD变形算法一起被用来开发方法学,芯设计者可以使用量化热通道惩罚因子由于与一组的CAD和CFD代码束变形。的基于CFD的热变形子信道惩罚因子量化方法是通过将其应用到该19针束实验中测试。对于这个基准,惩罚因子的评价结果​​为5.8%。在本文提出的其他结果包括的变形对两个19针的出口流体温度和127-销组件的影响的研究。

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