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Sprays in containment: Final results of the SARNET spray benchmark

机译:围堵喷雾:SARNET喷雾基准测试的最终结果

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The influence of containment sprays on atmosphere behaviour, a sub-task of the Work Package WP12-2 CAM (Containment Atmosphere Mixing), has been investigated through benchmark exercises based on TOSQAN (IRSN) and MISTRA (CEA) experiments. These tests are being simulated with lumped-parameter (LP) and Computational Fluid Dynamics (CFD) codes. Both atmosphere depressurization and mixing are being studied in two phases: a 'thermalhydraulic part', which deals with depressurization by sprays (TOSQAN 101 and MISTRA MASPn), and a 'dynamic part', dealing with light gas stratification break-up by spray (TOSQAN 113 and MISTRA MARC2b). In the thermalhydraulic part of the benchmark, participants have found the appropriate modelling to obtain good global results in terms of experimental pressure and mean gas temperature, for both TOSQAN and MISTRA tests. It can thus be considered that code users have a good knowledge of their spray modelling parameters. On a local level, for the TOSQAN test, single droplet behaviour is found to be well estimated by some calculations, but the global modelling of multiple droplets, i.e. of the spray, specifically for the spray dilution, is questionable in some CFD calculations. It can lead to some discrepancies localized in the spray region and can thus have a high impact on the global results, since most of the heat and mass transfers occur inside this region. In the MISTRA tests, wall condensation mass flow rates and local temperatures were used for code-experiment comparison and show that improvement of the local modelling, including initial conditions determination, is needed. In this dynamic part, a general result, in both tests, is that calculations do not recover the same kinetics of the mixing. Furthermore, concerning global mixing, LP contributions seem not suitable here. For the TOSQAN benchmark, the one-phase CFD calculations recover partially the phenomena involved during the mixing, whereas the two-phase flow CFD contributions generally recover the phenomena. Moreover, one important result is also that none of the contributions finds the exact amount of helium remaining in the dome above the spray nozzle in the TOSQAN 113. Discrepancies are rather high (above 5%vol of helium). Results are thus encouraging, but the level of validation should be improved. The same kind of conclusions can be drawn for the MISTRA MARC2B tests. As a conclusion of this SARNET spray benchmark, the level of validation obtained here is encouraging for the use of spray modelling for risk analysis. However, some more detailed investigations are needed to improve model parameters and decrease the uncertainty for containment applications as well as to increase the predictability of the phenomena within the containment analyses. Further activities are well encouraged on this topic, such as numerical benchmarks on analytical separate-effect experiments.
机译:通过基于TOSQAN(IRSN)和MISTRA(CEA)实验的基准测试,已经研究了安全喷雾对大气行为的影响,这是工作包WP12-2 CAM(遏制大气混合)的子任务。这些测试正在使用集总参数(LP)和计算流体力学(CFD)代码进行模拟。大气减压和混合的研究分为两个阶段:“热液压部分”,用于处理喷雾降压(TOSQAN 101和MISTRA MASPn);以及“动态部分”,用于处理通过喷雾造成的轻质气体分层( TOSQAN 113和MISTRA MARC2b)。在基准的热工液压部分中,参与者找到了合适的模型,可以对TOSQAN和MISTRA试验在实验压力和平均气体温度方面获得良好的整体结果。因此,可以认为代码用户对他们的喷雾建模参数有很好的了解。在局部水平上,对于TOSQAN测试,通过一些计算可以很好地估计单个液滴的行为,但是在某些CFD计算中,多个液滴(即喷雾)的全局建模(特别是喷雾稀释)是有问题的。由于大部分热量和质量传递都发生在该区域内,因此它可能导致局部区域出现差异,从而对整体结果产生重大影响。在MISTRA测试中,将墙冷凝水质量流量和局部温度用于代码实验比较,结果表明需要改进局部建模,包括确定初始条件。在此动态部分中,两个测试的总体结果是,计算不会恢复相同的混合动力学。此外,关于全球混合,LP贡献在这里似乎不合适。对于TOSQAN基准,一相CFD计算可部分恢复混合过程中涉及的现象,而两相流CFD贡献通常可恢复现象。此外,一个重要的结果是,在TOSQAN 113的喷嘴上方的圆顶中没有发现确切的氦气残留量。差异非常大(氦气体积百分比高于5%)。因此,结果令人鼓舞,但验证水平应提高。对于MISTRA MARC2B测试可以得出相同类型的结论。作为该SARNET喷雾基准测试的结论,对于将喷雾建模用于风险分析,此处获得的验证水平令人鼓舞。但是,需要进行一些更详细的研究,以改善模型参数并减少安全壳应用程序的不确定性,并提高安全壳分析中现象的可预测性。在此主题上的进一步活动受到鼓励,例如分析性单独效应实验的数字基准。

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