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首页> 外文期刊>Journal of nuclear engineering and radiation science >Analyses of Gas Stratification Erosion by a Vertical Jet in Presence of an Obstacle Using the GOTHIC Code
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Analyses of Gas Stratification Erosion by a Vertical Jet in Presence of an Obstacle Using the GOTHIC Code

机译:使用哥特式代码在存在障碍物存在下垂直喷射的气体分层腐蚀分析

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摘要

The GOTHIC code was validated using three experiments carried out in the PANDA facility in the framework of the OECD/NEA HYMERES project. These tests addressed the mixing of an initially stratified atmosphere by means of a vertical jet in the presence of on obstacle (circular plate). This paper reports on the simulations of three experiments, and complementary, quasi-steady-state tests without stratification, where the flow structure above the impingement plate could be observed by means of particle image velocimetry (PIV) velocity measurements in a region larger than that considered in the transient experiments. Moreover, simulations of similar tests without obstacle conducted during the OECD/SETH-2 project are also discussed. The reference, best-estimate model used for the analyses of the three experiments with different flowrates and initial and pressure boundary conditions was built on the base of a multistep approach. This was based on mesh and modeling sensitivity studies mostly performed for the complementary tests, to assess the capability to represent the flow structure produced by the jet-plate interaction with different meshes around the plate. Generally, the results show that the use of a coarse mesh and the standard k-epsilon turbulence model permits a reasonable representation of the erosion process, but with a systematic over prediction of the mixing time. The results with the reference model were more accurate for two experiments with two flowrates and same initial conditions and all complementary tests. For the third test with different initial and boundary conditions, however, poor results were obtained with the reference model, which could only be improved by further refining the mesh. These results indicate that a model "qualified" for certain conditions could be inadequate for other cases, and sensitivity studies are necessary for the specific conditions considered in the analyses.
机译:在OECD/NEA HYMERES项目的框架下,在熊猫设施内进行了三次实验,验证了哥特式代码。这些试验涉及在障碍物(圆板)存在的情况下,通过垂直射流对初始分层大气进行混合。本文报告了三个实验的模拟,以及补充的准稳态无分层试验,其中可以通过粒子图像测速(PIV)速度测量在比瞬态实验中考虑的区域更大的区域内观察冲击板上方的流动结构。此外,还讨论了OECD/SETH-2项目期间进行的类似无障碍试验的模拟。在多步骤方法的基础上,建立了用于分析三个不同流量、初始和压力边界条件的实验的参考最佳估计模型。这是基于网格和建模敏感性研究,主要用于补充试验,以评估表征射流板与板周围不同网格相互作用产生的流动结构的能力。一般来说,结果表明,使用粗网格和标准k-ε湍流模型可以合理地表示侵蚀过程,但对混合时间的系统性过度预测。对于两个具有两个流量和相同初始条件的试验以及所有补充试验,参考模型的结果更准确。然而,对于具有不同初始和边界条件的第三次试验,参考模型的结果较差,只能通过进一步细化网格来改善。这些结果表明,适用于某些条件的“合格”模型可能不适用于其他情况,并且需要对分析中考虑的特定条件进行敏感性研究。

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