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Advances in the characterisation of reactive gas and solid mixtures under low pressure conditions

机译:低压条件下反应性气体和固体混合物的表征研究进展

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摘要

This work describes the use of splitting methods in the analysis of reactive two-phase mixtures of gases and particles under conditions that make the source terms very stiff. In our particular case, these are low pressure, small particles, high solid concentration, and very dense solids. The gas phase is considered a perfect gas and the solid one is assumed to be incompressible. The integration of the source terms proposed seems to help tackle without difficulty the type of dust mobilisation and combustion problems studied: This consists of an implicitisation of the source term performed after the evaluation of the advection problem. Some numerical results are included; they correspond to a mobilisation of the mixture by means of shock, a mobilisation problem provoked by a rarefaction wave, and the combustion of tungstendust in a reacting atmosphere. An example of a 3D dust mobilisation sequence inside the vacuum vessel (VV) of the ITER (International Thermonuclear Experimental Reactor) completes this work.
机译:这项工作描述了在使源项变得非常僵硬的条件下,在分析气体和颗粒的反应性两相混合物时使用分裂方法。在我们的特殊情况下,这些是低压,小颗粒,高固体浓度和非常致密的固体。气相被认为是一种理想的气体,而固态则被认为是不可压缩的。提议的源术语的整合似乎可以帮助您轻松解决所研究的粉尘迁移和燃烧问题的类型:这包括对流平流问题评估后所执行的源术语的隐含。包括一些数值结果;它们对应于通过冲击使混合物迁移,由稀疏波引起的迁移问题以及反应气氛中钨粉的燃烧。以ITER(国际热核实验反应堆)的真空容器(VV)内部的3D灰尘移动顺序为例,完成了这项工作。

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