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Macroscopic Modeling of an Agglomerated and Sintered Particle in Air Plasma Spraying

机译:空气等离子体喷涂中凝聚和烧结颗粒的宏观建模

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Existing modeling techniques can determine the heat transfer within idealized spherical particles with homogenous morphology. Agglomerated particles are not homogenous and consist of multiple smaller particles which are packed together. The reduced contact area between the individual smaller particles results in a drastic reduction in the effective thermal conductivity of the agglomerate. Conversely, it can enhance the heat transfer due to the increased particle surface area and gas penetration into the agglomerate. Moreover, the momentum transfer from the plasma to the agglomerate differs from that of a homogenous spherical particle, which can significantly affect the heating dynamics of the agglomerate. All of the mentioned phenomena have been taken into account in a novel particle modeling approach by resolving the 3-D geometry of the agglomerates and the flow around it. The presented model is coupled with the particle-laden free jet model. Differences in kinematics and heating dynamics of the agglomerates have been analyzed with regard to their packing densities. The presented model was compared to a simplified approach where the agglomerates were represented by spherical particles with their mass corresponding to the agglomerates with different packing distances. The comparison proved the necessity of 3-D resolution of the particle morphology.
机译:现有的建模技术可以确定具有均匀形态的理想球形颗粒内的热传递。附聚颗粒不是均匀的并且由多个较小的颗粒组成,该颗粒被包装在一起。各个较小颗粒之间的降低的接触面积导致聚集的有效导热率的急剧降低。相反,它可以增强由于颗粒表面积增加和气体渗透到聚集中而引起的热传递。此外,从等离子体到附聚物的动量从均匀球形颗粒的转移不同,这可以显着影响附聚物的加热动态。通过解析附聚物的3-D几何形状和其周围的流动,以新颖的粒子建模方法考虑了所有提到的现象。所提出的模型与粒子 - 载有免费喷射模型相结合。关于它们的包装密度分析了聚集体的运动学和加热动力学的差异。将呈现的模型与简化的方法进行了比较,其中聚集体由球形颗粒表示,其质量与具有不同填充距离的附聚物相对应。比较证明了3-D分辨率的颗粒形态的必要性。

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