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首页> 外文期刊>Nuclear Materials and Energy >Numerical simulation by finite element modelling of diffusion and transient hydrogen trapping processes in plasma facing components
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Numerical simulation by finite element modelling of diffusion and transient hydrogen trapping processes in plasma facing components

机译:面向等离子体的部件中扩散和瞬态氢捕获过程的有限元建模数值模拟

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In order to simulate hydrogen charging and discharging cycles of mechanically loaded structures full 3D Macroscopic Rate Equation (MRE) modelling is proposed based on a finite element method (FEM). The model, implemented in the 3DS Abaqus software, uses a generalized transport equation, which accounts for mechanical fields, hydrogen transport and trapping, and their evolution with time. The influence of a-priori known thermal field has also been included. To ensure the solution convergence and the numerical stability, the trapping kinetic is introduced by using an approximation of the analytical solution the McNabb and Foster equation. Comparisons with a relevant 1D MRE code and with thermal programmed desorption (TPD) experimental results are performed on a 1D configuration to validate the model. Next, the model is used to simulate the tritium diffusion and trapping in a 2D geometry of interest in the upper plug of ITER tokamak, and results of tritium inventory are compared with an equivalent 1D calculation.
机译:为了模拟机械负载结构的氢充放电循环,基于有限元方法(FEM),提出了完整的3D宏观速率方程(MRE)建模。该模型在3DS Abaqus软件中实现,使用广义的输运方程式,该方程式说明了机械场,氢的输运和捕集及其随时间的演变。还包括先验已知热场的影响。为了确保解的收敛性和数值稳定性,通过使用McNabb和Foster方程的解析解的近似值来引入俘获动力学。在1D配置上与相关的1D MRE代码和热编程解吸(TPD)实验结果进行了比较,以验证模型。接下来,该模型用于模拟ITER托卡马克上部塞中感兴趣的2D几何形状中the的扩散和捕获,并将tri的存量结果与等效的1D计算进行比较。

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