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首页> 外文期刊>International journal for simulation and multidisciplinary design optimization >Thermal modeling of hydrogen storage by absorption in a magnesium hydrides tank
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Thermal modeling of hydrogen storage by absorption in a magnesium hydrides tank

机译:通过在氢化镁罐中吸收进行储氢的热模型

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This paper summarizes numerical results of hydrogen absorption simulated in an axisymmetric tank geometry containing magnesium hydride heated to 300?°C and at moderate storage pressure 1?MPa. The governing equations are solved with a fully implicit finite volume numerical scheme used by a commercial software FLUENT. The effect of the different kinetic reaction equations modeling hydrogen absorption was studied by the introduction of a specific subroutine at each time step in order to consider which one will provide results close to available experimental results. Spatial and temporal profiles of temperature and concentration in hydride bed are plotted. Results show that suitable method for our two-dimensional study is a CV-2D technique because it generates the smallest error especially during the beginning of the reaction. Also, its computational time is the shortest one compared to the other methods.
机译:本文总结了在包含氢化镁的轴对称储罐几何形状中模拟的氢吸收的数值结果,氢化镁加热至300°C,在中等存储压力下为1MPa。用商业软件FLUENT使用的完全隐式有限体积数值方案求解控制方程。通过在每个时间步引入一个特定的子程序,研究了模拟动力学吸收氢的不同动力学反应方程式的影响,以便考虑哪个子程序将提供与现有实验结果相近的结果。绘制了氢化物床中温度和浓度的时空分布图。结果表明,进行二维研究的合适方法是CV-2D技术,因为它产生的误差最小,尤其是在反应开始时。而且,与其他方法相比,它的计算时间最短。

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