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Mechanism study and numerical simulation of Uranium nitriding induced by high energy laser

机译:高能激光诱导铀氮化铀的机制研究与数值模拟

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The gradients of interfacial tension induced by local heating led to Marangoni convection, which had a significant effect on surface formation and the process of mass transport in the laser nitriding of uranium. An experimental observation of the underlying processes was very difficult. In present study, the Marangoni convection was considered and the computational fluid dynamic (CFD) analysis technique of FLUENT program was performed to determine the physical processes such as heat transfer and mass transport. The progress of gas-liquid falling film desorption was presented by combining phase-change model with fluid volume function (VOF) model. The time-dependent distribution of the temperature had been derived. Moreover, the concentration and distribution of nitrogen across the laser spot are calculated. The simulation results matched with the experimental data. The numerical resolution method provided a better approach to know the physical processes and dependencies of the coating formation.
机译:局部加热引起的界面张力梯度LED对Marangoni对流,对铀激光氮化的表面形成和大规模运输过程具有显着影响。对底层过程的实验观察非常困难。在本研究中,考虑了Marangoni对流,并进行了流利程序的计算流体动态(CFD)分析技术,以确定传热和大规模运输等物理过程。通过与流体体积函数(VOF)模型组合相变模型来提出气液下降膜解吸的进展。衍生温度的时间依赖性分布。此外,计算了激光斑的氮的浓度和分布。仿真结果与实验数据相匹配。数值分辨率方法提供了更好的方法来了解涂层形成的物理过程和依赖性。

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