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EXPERIMENTAL AND NUMERICAL SIMULATION ON HYDRAULIC BEHAVIOR OF MOLTEN FLOW IN THE LOWER PART IN REACTOR CORE

机译:反应堆芯下部熔融流动水力行为的实验性和数值模拟

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In the decommissioning work of nuclear power plants, it is important to grasp the sedimentation place of molten materials. However, the technique to grasp exactly sedimentation place is not established now. Therefore, the detailed and phenomenological numerical simulation code named JUPITER for predicting the molten core behavior is developed. In the study, visualization experiment and numerical simulation were performed to validate the applicability of the JUPITER to the hydraulic relocation behavior in core internals. The test section used in this experiment simulated the structure of the core internals, such as a control rod and a fuel support piece, simply. The working fluid is water under the atmospheric pressure. The experiment uses a high-speed video camera to visualize the flow behavior. The behavior and the speed of the liquid film in a narrow flow channel is obtained. For the numerical analysis carried out prior to the experiment, the behavior of flow down liquid was shown. The typical behavior was also observed that the tip of a liquid film flowing down splits into.
机译:在核电站的退役工作中,重要的是掌握熔化物质的沉降地点。然而,现在没有建立掌握沉积地点的技术。因此,开发出用于预测熔融核心行为的Jupiter命名为Jupiter的详细和现象学的数值模拟代码。在研究中,进行可视化实验和数值模拟,以验证木星对核心内部液压迁移行为的适用性。本实验中使用的测试部分模拟了核心内部的结构,例如控制杆和燃料支撑件,简单地。工作流体在大气压下是水。实验使用高速摄像机可视化流动行为。获得窄流动通道中液体膜的行为和速度。对于在实验前进行的数值分析,显示了流动下流液的行为。还观察到典型的行为,液体膜的尖端流下来分裂成。

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