用计算流体动力学方法对乏燃料贮存桶进行全范围模拟

H. Hayat, Intsar-ul-haq
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引用次数: 1

摘要

利用ANSYS CFX对TN24P桶的小尺寸模型进行了全范围模拟,并进行了计算流体力学(CFD)分析。建立小尺度模型的目的是了解各种参数的敏感性,并建立分析方法,以减少计算负荷。分析的另一个目标是准确预测峰值包层温度(PCT)。灵敏度研究预测了在全范围模拟中避免多孔介质方法的有效换热,并预测了不受网格尺寸变化、离散化方案变化和精度水平影响的解。与另一个基于CFD的程序FLUENT相比,温度变化的结果是相同的。峰值包层温度(PCT)在灵敏度研究中定义的允许范围内(PCT <;400°C)。本研究计算的包层峰值温度为263.9℃,而FLUENT代码预测的包层峰值温度为263.7℃。使用两种不同编码的解决方案误差百分比小于0.5%。使用计算机代码COBRA-SFS对乏燃料储存桶进行CFD分析,以验证和比较结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full scope simulation of dry spent fuel storage cask using computational fluid dynamics
A computational fluid dynamics (CFD) analysis of small scale model of TN24P cask was performed by a full scope simulation using computer code ANSYS CFX. The objective of developing small scale model is to understand the sensitivities of various parameters and to establish the analysis methodology to minimize the computational load. Another objective of analysis is to predict the accurate peak clad temperature (PCT). The sensitivity study predicts the efficient heat transfer by avoiding porous media approach during full scope simulation and also predicts the solution independent of grid sizes variation, change of discretization scheme and level of precisions. The variations in temperature results are same when compared with another CFD based code FLUENT. Peak clad temperature (PCT) is found in the permissible range (PCT <;400 °C) defined in sensitivity study. In present study, calculated peak clad temperature is 263.9 °C while the predicted peak clad temperature by using FLUENT code is 263.7 °C. Percentage error in solutions by using two different codes is less than 0.5%. CFD analysis of spent fuel storage cask is performed to validate and compare results with performed analysis using computer code COBRA-SFS.
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