首页> 外文会议>International conference on nuclear engineering >REACTOR BAFFLE COOLING CFD FRAMEWORK FOR SWELLING ASSESSMENT
【24h】

REACTOR BAFFLE COOLING CFD FRAMEWORK FOR SWELLING ASSESSMENT

机译:用于膨胀评估的反应釜冷却CFD框架

获取原文

摘要

This Paper presents an improved estimation of reactor core baffle temperature distribution, during operation, at the nominal power level to address swelling problems of the reactor internals. Swelling is the main limiting factor in the reactor core internals long term operation of WER-1000 nuclear units. The material irradiation-induced swelling and creep models are very sensitive to temperature distribution in metal, thus a more detailed analysis of the core baffle metal thermohydraulic cooling characteristics is required. A framework for CFD analysis of WER-1000 reactor baffle cooling is presented. Firstly, an analytical model was developed to obtain boundary conditions and simplify CFD analysis, i.e. the real geometry of the cooling channels was replaced by equivalent elements, the core was presented as porous body with the appropriate characteristics. Secondly, the CFD analysis was performed using 60 - degree symmetry, which included: core, baffle and core barrel, it is limited by the height of the baffle. Core is simplified as a homogeneous body with considering of spatial volumetric energy release. Core baffle is presented as monolithic body with considering of gamma-ray heat generation. Model includes a simplified geometry of connecting studs, considering cooling flow of the coolant through the nuts grooves. Calculated convection coefficient and temperature are in good agreement with analytical model, and give a more convenient result comparing to RELAP5/mod3.2. Obtained results were used to estimate baffle swelling process. Due to the less conservative results in temperature distribution swelling and creep deformations significantly decreased.
机译:本文提出了一种在标称功率水平下改进的反应堆堆芯挡板温度分布估算方法,以解决反应堆内部的膨胀问题。膨胀是WER-1000核动力装置反应堆堆芯内部长期运行的主要限制因素。材料辐照引起的溶胀和蠕变模型对金属中的温度分布非常敏感,因此需要对芯折流板金属热工冷却特性进行更详细的分析。提出了用于WER-1000反应堆挡板冷却的CFD分析的框架。首先,建立分析模型以获取边界条件并简化CFD分析,即用等效元素代替冷却通道的实际几何形状,将芯表示为具有适当特性的多孔体。其次,使用60度对称性进行CFD分析,其中包括:芯,挡板和芯筒,它受到挡板高度的限制。考虑到空间体积能量释放,岩心简化为均质体。考虑到伽马射线热量的产生,核心挡板以整体式形式出现。考虑到冷却液通过螺母槽的​​冷却流,模型包括简化的连接螺柱几何形状。计算得出的对流系数和温度与解析模型吻合良好,与RELAP5 / mod3.2相比,给出的结果更方便。获得的结果用于估计挡板的膨胀过程。由于温度分布的保守性较差,因此膨胀和蠕变变形显着降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号