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Prediction of Flow Regimes and Thermal Hydraulic Parameters in Two-Phase Natural Circulation by RELAP5 and TRACE Codes

机译:通过RETAP5和痕量码预测两相自然循环中的流动制度和热液压参数

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摘要

In earlier study we have demonstrated that RELAP5 can predict flow instability parameters (flow rate, oscillation period, temperature, and pressure) in single channel tests in CIRCUS-IV facility. The main goals of this work are to (i) validate RELAP5 and TRACE capabilities in prediction of two-phase flow instability and flow regimes and (ii) assess the effect of improvement in flow regime identification on code predictions. Most of the results of RELAP5 and TRACE calculation are in reasonable agreement with experimental data from CIRCUS-IV. However, both codes misidentified instantaneous flow regimes which were observed in the test with high speed camera. One of the reasons for the incorrect identification of the flow regimes is the small tube flow regime transition model in RELAP5 and the combined bubbly-slug flow regime in TRACE. We found that calculation results are sensitive to flow regime boundaries of RELAP5 which were modified in order to match the experimental data on flow regimes. Although the flow regime became closer to the experimental one, other predicted thermal hydraulic parameters showed larger discrepancy with the experimental data than with the base case calculations where flow regimes were misidentified.
机译:在早期的研究中,我们已经证明,RELAP5可以预测在CIRCUS-IV设施单通道测试流动不稳定参数(流速,振荡周期,温度和压力)。这项工作的主要目的是(ⅰ)验证RELAP5和在二相流不稳定性的预测TRACE能力和流动状态和(ii)评估的改善流态识别代码上的预测的效果。最RELAP5和TRACE计算的结果都与从CIRCUS-IV实验数据吻合。然而,这两种码错误识别其是在与高速照相机测试观察到的瞬时流态。其原因之一为流态的不正确的识别是RELAP5小管流动状态转变模型和在TRACE组合气泡段塞流型。我们发现,计算结果是流动,这是为了匹配流态的实验数据修改RELAP5的制度边界敏感。虽然流动状态变得更接近实验之一,其它预测的热液压参数表明更大的差异与实验数据不是与其中流动状态被错误识别的基础情况的计算。

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