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REACTOR CAVITY COOLING SYSTEM FACILITY SHAKEDOWN AND RELAP5-3D MODEL VALIDATION

机译:反应堆腔冷却系统设施Shakedown和RELAP5-3D模型验证

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A small scale water-cooled experimental facility was built in order to study the complex thermohydraulic phenomena taking place in the Reactor Cavity Cooling System (RCCS) during the normal operation (steady-state case) an during accident scenario when forced convection is lost. The facility represents a portion of the reactor vessel with nine stainless steel coolant risers. The pipes are connected via cold and hot manifolds to a water tank located on top of the cavity. Due to the complexity of the expected thermal hydraulic phenomena, a RELAP5-3D input deck was prepared in order to predict the main thermohydraulic parameters, mainly coolant flow rate and temperatures. During the facility shakedown, the coolant flow was constantly monitored in order to observe the natural circulation startup phase and some interesting features of the coolant behavior were observed. The comparison of the preliminary experimental results from a test run with the prediction of the RELAP5-3D simulations helped validating the assumptions and simplifications adopted in the model for future simulations of steady-state and transients, and confirmed the potentiality of the system code for analysis of such systems. In the present paperwork, a detailed description of the experimental facility and the RELAP5-3D model are provided. Preliminary experimental results from different test runs are described and compared with the RELAP5-3D simulation results.
机译:建造了小规模的水冷实验设施,以研究在正常运行期间在反应器腔冷却系统(RCC)中发生的复杂热液现象(RCCS),当强制对流丢失时发生事故情景期间。该设施表示具有九个不锈钢冷却剂提升管的反应器容器的一部分。管道通过冷和热歧管连接到位于腔顶部的水箱。由于预期的热液压现象的复杂性,准备了RELAP5-3D输入甲板,以预测主要的热液压参数,主要是冷却剂流速和温度。在设施升起期间,持续监测冷却剂流动以观察天然循环启动阶段,并且观察到冷却剂行为的一些有趣特征。通过预测Relap5-3D模拟的测试运行的初步实验结果的比较有助于验证模型中采用的假设和简化,以便进行稳态和瞬变的模拟,并确认了系统代码分析的潜力这些系统。在本文文书工作中,提供了实验设施和RELAP5-3D模型的详细描述。描述了不同测试运行的初步实验结果,并与Relap5-3D仿真结果进行了比较。

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