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A Numerical Study of Dust Explosion Properties of Hydrogen Storage Alloy Materials

机译:储氢合金材料粉尘爆炸特性的数值研究

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Hydride materials, used in hydrogen storage technologies, in powder form can be an explosion hazard and testing these materials using standard techniques is difficult. Research reported in this paper is an attempt to develop numerical methods to obtain explosion properties of such materials. In this work a one-dimensional transport-type model is presented to simulate the dust explosion process in a closed 20-L spherical vessel. Transport equations for energy, species and particle volume fraction are solved with the finite difference method, whilst velocity distribution and pressure are updated with numerical integration of the continuity equation. The model is first validated with experimental data and then applied to simulate the explosion process of an AB2- type alloy powder used for hydrogen storage.
机译:储氢技术中使用的粉末状氢化物材料可能会引起爆炸危险,因此很难使用标准技术对这些材料进行测试。本文报道的研究是尝试开发数值方法以获得此类材料的爆炸特性的尝试。在这项工作中,提出了一个一维运输类型的模型来模拟密闭的20升球形容器中的粉尘爆炸过程。用有限差分法求解能量,物质和颗粒体积分数的输运方程,同时用连续性方程的数值积分更新速度分布和压力。该模型首先使用实验数据进行验证,然后应用于模拟AB的爆炸过程 2 -用于储氢的合金粉末。

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