首页> 外文期刊>Nuclear Engineering and Design >Experiments at the mixing test facility ROCOM for benchmarking of CFD codes
【24h】

Experiments at the mixing test facility ROCOM for benchmarking of CFD codes

机译:在混合测试设备ROCOM上进行CFD代码基准测试

获取原文
获取原文并翻译 | 示例
       

摘要

For the validation of computational fluid dynamics (CFD) codes, experimental data on fluid flow parameters with high resolution in time and space are needed. Rossendorf Coolant Mixing Model (ROCOM) is a test facility for the investigation of coolant mixing in the primary circuit of pressurized water reactors. This facility reproduces the primary circuit of a German KONVOI-type reactor. All important details of the reactor pressure vessel are modelled at a linear scale of 1:5. The facility is characterized by flexible possibilities of operation in a wide variety of flow regimes and boundary conditions. The flow path of the coolant from the cold legs through the downcomer until the inlet into the core is equipped with high-resolution detectors, in particular, wire mesh sensors in the downcomer of the vessel with a mesh of 64 × 32 measurement positions and in the core inlet plane with one measurement position for the entry into each fuel assembly, to enable high-level CFD code validation. Two different types of experiments at the ROCOM test facility have been proposed for this purpose. The first proposal concerns the transport of a slug of hot, under-borated condensate, which has formed in the cold leg after a small break LOCA, towards the reactor core under natural circulation. The propagation of the emergency core cooling water in the test facility under natural circulation or even stagnant flow conditions should be investigated in the second type of experiment. The measured data can contribute significantly to the validation of CFD codes for complex mixing processes with high relevance for nuclear safety.
机译:为了验证计算流体动力学(CFD)代码,需要在时间和空间上具有高分辨率的流体流动参数的实验数据。 Rossendorf冷却液混合模型(ROCOM)是用于研究压水反应堆主回路中冷却液混合的测试设备。该设备复制了德国KONVOI型反应堆的主回路。反应堆压力容器的所有重要细节均以1:5的线性比例建模。该设施的特点是可以在各种流动状态和边界条件下灵活操作。冷却液从冷段到降液管直到核心的入口的流路都配备了高分辨率检测器,特别是在容器降液管中具有64×32测量位置和核心入口平面带有一个测量位置,可进入每个燃料组件,以进行高级CFD代码验证。为此,在ROCOM测试设备上提出了两种不同类型的实验。第一个建议涉及在局部循环LOCA短暂中断后,在冷段中形成的一股热的,硼酸盐不足的冷凝物向反应堆堆芯的自然循环输送。在第二种类型的实验中,应研究应急堆芯冷却水在自然循环甚至停滞流动条件下在测试设施中的传播。实测数据可以大大有助于验证复杂混合过程的CFD代码,与核安全高度相关。

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