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The modeling of graphite oxidation behavior for HTGR fuel coolant channels under normal operating conditions

机译:正常运行条件下HTGR燃料冷却液通道的石墨氧化行为建模

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The oxidation of graphite in normal operating conditions is a very important factor when evaluating the service time of the graphite structural material in a high temperature gas-cooled reactor (HTGR). This paper deals with the modeling of graphite oxidation by steam in the helium channel of a fuel block. The FEM software COMSOL is used: the turbulent flow of the coolant is simulated by using the k-ε model and the chemical reaction is expressed by the Langmuir-Hinshelwood equation. Calculations were carried out for steam pressures around 1 Pa and for different temperature distributions. The influence of burn-off and the diffusion in graphite porosities were both considered in the oxidation. Results show that oxidation mainly occurred on the graphite surface at the bottom of the core because of the higher temperature. The thickness of graphite with a burn-off higher than 8% was about 1 mm at the core base. Less than 15% of steam was consumed in the coolant channel of the fuel assemblies. Calculations also showed that the mean gasification rate in one channel for the second service time was larger than the first service time.
机译:在评估高温气冷反应器(HTGR)中石墨结构材料的使用寿命时,正常操作条件下的石墨氧化是一个非常重要的因素。本文研究了燃料块氦通道中蒸汽对石墨氧化的建模。使用FEM软件COMSOL:使用k-ε模型模拟冷却剂的湍流,并通过Langmuir-Hinshelwood方程表示化学反应。针对大约1 Pa的蒸汽压力和不同的温度分布进行了计算。氧化过程中都考虑了燃尽和石墨孔隙扩散的影响。结果表明,由于温度升高,氧化主要发生在芯部底部的石墨表面。燃尽率高于8%的石墨在芯基处的厚度约为1 mm。不到15%的蒸汽在燃料组件的冷却液通道中消耗。计算还表明,第二个服务时间内一个通道的平均气化率大于第一个服务时间。

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