...
首页> 外文期刊>Journal of nuclear engineering and radiation science >Study on Sensitivity of Control Rod Cell Model in Reflector Region of High-Temperature Engineering Test Reactor
【24h】

Study on Sensitivity of Control Rod Cell Model in Reflector Region of High-Temperature Engineering Test Reactor

机译:高温工程试验堆反射区控制棒单元模型灵敏度研究

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The high-temperature engineering test reactor (HTTR) is a block-type high-temperature gas-cooled reactor (HTGR). There are 32 control rods (16 pairs) in the HTTR. Six of the pairs of control rods are located in a core region and the remainder are located in a reflector region surrounding the core. Inserting all control rods simultaneously at the reactor scram in a full-power operation presents difficulty in maintaining the integrity of the metallic sleeve of the control rod because the core temperature of the HTTR is too high. Therefore, a two-step control rod insertion method is adopted for the reactor scram. The calculated control rod worth at the first step showed a larger underestimation than the measured value in the second step, although the calculated results of the excess reactivity tests showed good agreement with the measured result in the criticality tests of the HTTR. It is concluded that a cell model for the control rod guide block with the control rod in the reflector region is not suitable. In addition, in the core calculation, the macroscopic cross section of a homogenized region of the control rod guide block with the control rod is used. Therefore, it would be one of the reasons that the neutron flux distribution around the control rod in control rod guide block in the reflector region cannot be simulated accurately by the conventional cell model. In the conventional cell model, the control rod guide block is surrounded by the fuel blocks only, although the control rods in the reflector region are surrounded by both the fuel blocks and the reflector blocks. The difference of the neutron flux distribution causes the large difference of a homogenized macroscopic cross-section set of the control rod guide block with the control rod. Therefore, in this paper, the cell model is revised for the control rod guide block with the control rod in the reflector region to account for the actual configuration around the control rod guide block in the reflector region. The calculated control rod worth at the first step using the improved cell model shows better results than the previous one.
机译:高温工程试验堆(HTTR)是一种块式高温气冷堆(HTGR)。HTTR 中有 32 根控制棒(16 对)。其中六对控制棒位于核心区域,其余位于核心周围的反射器区域。在全功率运行中同时将所有控制棒插入反应堆,由于HTTR的堆芯温度过高,因此难以保持控制棒金属套管的完整性。因此,反应堆干层采用两步控制棒插入方法。尽管超额反应性测试的计算结果与HTTR临界性测试的测量结果吻合良好,但第一步计算的控制棒值比第二步的测量值低估更大。得出的结论是,控制杆在反射器区域的控制杆导向块的单元模型是不合适的。此外,在岩心计算中,使用了控制杆导向块与控制杆的均质区域的宏观横截面。因此,这将是传统电池模型无法准确模拟反射器区域控制棒导向块中控制棒周围中子通量分布的原因之一。在传统的电池模型中,尽管反射器区域中的控制杆同时被燃料块和反射器块包围,但控制杆导向块仅被燃料块包围。中子通量分布的差异导致控制杆导块与控制杆的均质宏观横截面组差异较大。因此,本文对控制杆导向块的单元模型进行了修改,控制杆位于反射器区域,以考虑反射器区域中控制杆导向块周围的实际配置。使用改进的单元模型在第一步计算的控制棒值显示出比前一个更好的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
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