首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >SIMULATION OF GR19 SODIUM BOILING EXPERIMENTS WITH CATHARE 2 SYSTEM CODE AND TRIO_U MC SUBCHANNEL CODE
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SIMULATION OF GR19 SODIUM BOILING EXPERIMENTS WITH CATHARE 2 SYSTEM CODE AND TRIO_U MC SUBCHANNEL CODE

机译:Cathare 2系统代码和TRIO_U MC子信道代码模拟GR19钠沸腾实验

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The CEA R&D program on SFRs includes the study of reactor behavior during accidental transients possibly leading to sodium boiling, such as an unprotected loss of flow. To that end, two existing CEA thermal hydraulic codes are being extended to model two-phase sodium flows: CATHARE (system dynamics) and Trio_U MC (subchannel). In the case of the 6-equations CATHARE code, the applicability of its current closure laws to two-phase sodium flow must be evaluated; for the 3-equations MC code, new numerical methods are needed as well. This paper reports simulations with these codes of the GR19 sodium boiling experiments done at CEA Grenoble in the 80's. Simulations of boiling test on this 19-pin out-of-pile mock-up were undertaken in order to provide a preliminary validation of the two codes and to guide future code improvements. The results presented here show that CATHARE can achieve good agreement with the experimental data: however, some closure laws (especially for heat transfer) will still have to be revised to better fit sodium boiling physics. Meanwhile, TrioU MC is capable of predicting correctly the occurrence and extension of local boiling in boiling steady states: however, further improvements will be needed to correctly model unstable and transient boiling.
机译:上的SFR的CEA R&d方案包括反应器的行为过程中意外瞬变可能导致沸腾钠,如流的未受保护的损失的研究。为此,现有的两个CEA热工水力码被扩展到模拟两相钠流动:CATHARE(系统动力学)和Trio_U MC(子信道)。在6方程CATHARE码的情况下,其电流闭合法律两相钠流动的适用性必须进行评估;对于3-MC方程代码,需要以及新的数值的方法。本文报道了模拟与上世纪80年代在格勒诺布尔CEA完成GR19沸腾钠实验的这些代码。在这19针煮沸试验外的桩实体模型的模拟,以提供两个代码进行了初步验证,并指导今后的代码改进开展了。结果这里介绍显示,CATHARE可以实现与实验结果一致:不过,一些封闭的法律(特别是对传热)仍然必须进行修订,以更好地适应沸腾钠物理学。同时,TrioU MC能够正确预测在沸腾的稳定状态局部沸腾现象的发生和扩展:然而,进一步的改进将需要不稳定的和短暂的沸腾正确模拟。

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