熔盐堆冷却剂凝固行为的实验及数值模拟研究
熔盐堆因其优良的安全性与经济性而成为第IV代先进核反应堆系统中非常具有前景的一类堆型。然而,作为熔盐堆冷却剂的氟锂铍(FLiBe),其熔点为460 ℃,远高于环境温度,因此,存在冷却剂凝固而失去流动传热的风险。为此,基于能量守恒以及焓-多孔介质模型建立了带糊状区效应的一维凝固模型,通过设计的熔盐凝固实验进行模型验证,验证结果表明:总体模型误差小于±10%,满足反应堆系统安全分析要求。最后,基于系统安全分析程序ASYST-SF对FLiBe的管内填充行为进行了模拟,给出了典型工况下的流体温度、凝固层厚度以及压降的演化行为,计算结果对提升熔盐堆运行安全有着重要意义。...
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          | Published in | Hé jìshu Vol. 48 | 
|---|---|
| Main Authors | , , , , , , | 
| Format | Journal Article | 
| Language | Chinese | 
| Published | 
            Science Press
    
        01.05.2025
     | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 0253-3219 | 
| DOI | 10.11889/j.0253-3219.2025.hjs.48.230405 | 
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| Abstract | 熔盐堆因其优良的安全性与经济性而成为第IV代先进核反应堆系统中非常具有前景的一类堆型。然而,作为熔盐堆冷却剂的氟锂铍(FLiBe),其熔点为460 ℃,远高于环境温度,因此,存在冷却剂凝固而失去流动传热的风险。为此,基于能量守恒以及焓-多孔介质模型建立了带糊状区效应的一维凝固模型,通过设计的熔盐凝固实验进行模型验证,验证结果表明:总体模型误差小于±10%,满足反应堆系统安全分析要求。最后,基于系统安全分析程序ASYST-SF对FLiBe的管内填充行为进行了模拟,给出了典型工况下的流体温度、凝固层厚度以及压降的演化行为,计算结果对提升熔盐堆运行安全有着重要意义。 | 
    
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| AbstractList | 熔盐堆因其优良的安全性与经济性而成为第IV代先进核反应堆系统中非常具有前景的一类堆型。然而,作为熔盐堆冷却剂的氟锂铍(FLiBe),其熔点为460 ℃,远高于环境温度,因此,存在冷却剂凝固而失去流动传热的风险。为此,基于能量守恒以及焓-多孔介质模型建立了带糊状区效应的一维凝固模型,通过设计的熔盐凝固实验进行模型验证,验证结果表明:总体模型误差小于±10%,满足反应堆系统安全分析要求。最后,基于系统安全分析程序ASYST-SF对FLiBe的管内填充行为进行了模拟,给出了典型工况下的流体温度、凝固层厚度以及压降的演化行为,计算结果对提升熔盐堆运行安全有着重要意义。 | 
    
| Author | 张 伟豪 曾 陈 周 翀 孟 履巅 顾 汉洋 刘 利民 刘 茂龙  | 
    
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| Snippet | 熔盐堆因其优良的安全性与经济性而成为第IV代先进核反应堆系统中非常具有前景的一类堆型。然而,作为熔盐堆冷却剂的氟锂铍(FLiBe),其熔点为460 ℃,远高于环境温度,因... | 
    
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| SubjectTerms | 一维凝固模型 熔盐凝固实验 熔盐堆 管内填充 糊状区  | 
    
| Title | 熔盐堆冷却剂凝固行为的实验及数值模拟研究 | 
    
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