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Effects of Plasma–Suspension Interaction on Axial Injection DC Suspension Plasma Spray

机译:血浆-悬浮液相互作用对轴向注射直流悬浮液等离子喷雾的影响

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A rotationally axisymmetric 2-D numerical simulation of a dc suspension plasma spray (SPS) torch with an axial injection system is performed to discuss the interaction between the plasma fluid and suspensions. A two-way coupling model is used for modeling the behavior of plasma fluid and suspensions with mutual interaction effects through momentum and energy transfer. To deeply understand the mutual interaction effects, the numerical simulation using a one-way coupling model, in which the influence of suspensions on the characteristics of plasma fluid is not taken into account, is also performed for comparison. A suspension feed rate is parametrically varied to discuss its influence on the characteristics of plasma fluid and suspensions. Numerical results show that the two-way interaction substantially impacts the velocities and temperatures of plasma fluid and suspensions, and the trajectories of suspensions in the dc SPS torch with an axial injection system. It is also shown from the numerical results that the increase in suspension feed rate results in decreasing the electric current density around the central axis of the plasma torch and expanding the region with electric current in the radial direction.
机译:进行了带有轴向注入系统的直流悬浮等离子喷涂(SPS)炬的旋转轴对称二维数值模拟,以讨论等离子体流体与悬浮液之间的相互作用。使用双向耦合模型来建模血浆流体和悬浮液的行为,并通过动量和能量转移产生相互影响。为了深入理解相互的相互作用,还进行了一个单向耦合模型的数值模拟,该模型不考虑悬浮液对血浆流体特性的影响。悬浮液的进料速度可以通过参数改变,以讨论其对血浆和悬浮液特性的影响。数值结果表明,双向相互作用会极大地影响等离子体流体和悬浮液的速度和温度,以及带有轴向注入系统的直流SPS焊炬中悬浮液的轨迹。从数值结果还可以看出,悬浮液进料速率的增加导致等离子体炬中心轴周围的电流密度降低,并且沿径向方向电流扩大。

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