Thermal and Fluid Analysis of Test Canister for Spent Nuclear Fuel

Marwan Charrouf, Allen T. Williams
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Abstract

The absence of a long-term solution for the storage of spent nuclear fuel prompts utilities in the United States to establish on-site storage for used fuel. The challenges associated with placement of spent fuel in dry cask storage on the power plant’s Independent Spent Fuel Storage Installations (ISFSI’s) include aging management of the stainless steel canisters and monitoring for the possible onset of stress corrosion cracking (SCC). The San Onofre Nuclear Generating Station (SONGS) has initiated a test program to examine the effects of heat generation variations inside a test canister using an electric heater rather than spent fuel on the shell temperatures. The test helps in the evaluation of external environmental factors and shell temperature, and to monitor for SCC. This paper presents the computational fluid dynamics (CFD) modeling developed in support of the test to analyze the air natural circulation in the subgrade enclosure and within the test canister with the electrical heating. The thermal analysis is performed using ANSYS CFX and integrally simulates the flow behavior and heat transfer mechanisms both inside and outside the test canister. Comparison of results from different heat loads that represent the decay heat time-profile, sensitivity to the turbulence model, and modes of heat dissipation are discussed. The CFD results are also compared to in-situ temperature measurements to validate the analysis.
乏核燃料试验罐的热流体分析
由于缺乏储存乏燃料的长期解决办法,美国的公用事业公司不得不就地储存乏燃料。在电厂的独立乏燃料储存装置(ISFSI)中,将乏燃料放置在干桶储存中所面临的挑战包括不锈钢罐的老化管理和可能发生的应力腐蚀开裂(SCC)的监测。圣奥诺弗雷核电站(SONGS)已经启动了一项测试计划,以检查使用电加热器而不是乏燃料对外壳温度在测试罐内产生的热量变化的影响。该试验有助于评估外部环境因素和壳温度,并监测SCC。本文介绍了为支持试验而开发的计算流体力学(CFD)模型,用于分析带有电加热的路基围护体和试验罐内的空气自然循环。热分析使用ANSYS CFX进行,完整地模拟了测试罐内外的流动行为和传热机制。讨论了不同热负荷下的衰减热时间分布、对湍流模型的敏感性和散热模式的比较结果。CFD结果还与现场温度测量结果进行了比较,以验证分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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