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Validation of TRACE Code against ROSA/LSTF Test for SBLOCA of Pressure Vessel Upper-Head Small Break

机译:压力容器上头小破口SBLOCA的ROSA / LSTF测试TRACE代码验证

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摘要

OECD/NEA ROSA/LSTF project tests are performed on the Large Scale Test Facility (LSTF). LSTF is a full-height, full-pressure and 1/48 volumetrically-scaled two-loop system which aims to simulate Japanese Tsuruga-2 Westinghouse-type 4-loop PWR. ROSA-V Test 6-1 simulates a pressure vessel (PV) upper-head small break loss-of-coolant accident (SBLOCA) with a break size equivalent to 1.9% of the volumetrically scaled cross-sectional area of the reference PWR cold leg.The main objective of present thesis is to build a TRACE calculation model for simulating thermal hydraulic behaviors in LSTF and PV upper-head SBLOCA, so as to assess different modeling options and parameters of TRACE code. The results show that TRACE code well reproduce the complex physical phenomena involved in this type of SBLOCA scenarios. Almost all the events in the experiment are well predicted by the model based on TRACE code. In addition, the sensitivity of different models and parameters are investigated. For example, the code slightly overestimates the break mass flow from upper head which affects the accuracy of the results significantly. The rising of core exit temperature (CET) is significantly influenced by the flow area of leakage between downcomer and hot leg. Besides, the effect of the break location, low pressure injection system (LPIS) and accumulator setup are also studied.
机译:OECD / NEA ROSA / LSTF项目测试是在大型测试工具(LSTF)上进行的。 LSTF是全高,全压力和1/48体积比例的两回路系统,旨在模拟日本Tsuruga-2西屋式4回路PWR。 ROSA-V测试6-1模拟了压力容器(PV)上端的小冷却液损失小事故(SBLOCA),其破裂尺寸等于参考PWR冷腿体积比例横截面面积的1.9%本论文的主要目的是建立一个TRACE计算模型,以模拟LSTF和PV上头SBLOCA中的热力行为,以评估TRACE代码的不同建模选项和参数。结果表明,TRACE代码很好地重现了此类SBLOCA方案中涉及的复杂物理现象。基于TRACE代码的模型几乎可以很好地预测实验中的所有事件。此外,还研究了不同模型和参数的敏感性。例如,该代码稍微高估了来自上端的断裂质量流量,这严重影响了结果的准确性。降液管和热管之间的泄漏流通面积显着影响堆芯出口温度(CET)的升高。此外,还研究了中断位置,低压注入系统(LPIS)和蓄能器设置的影响。

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    Xing, Mian;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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