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Modeling of the Natural Gas HVOF Process

机译:天然气HVOF过程的建模

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A supersonic external flow and high particle velocities, which lead to low porosity coatings, characterize the High Velocity Oxygen Fuel (HVOF) process. A numerical study of this process is proposed in the present work. In a first step, the PHOENICS CFD code is used for the computation of the flow inside a CDS gun and within the supersonic external jet: a two-dimensional axisymmetric geometry is used. The combustion model assumes chemical equilibrium whereas the turbulence effect is taken into account using the Chen-Kim k-e model, which is appropriate for the computation of round jets. In a second step, an in-house code is used in order to simulate the flow/particles interactions. Finally, numerical results obtained on in-flight particle characteristics are compared with measurements obtained with the DPV2000 system.
机译:超音速外部流动和高颗粒速度会导致低孔隙率涂层,这是高速氧气燃料(HVOF)工艺的特征。在本工作中提出了对此过程的数值研究。第一步,将PHOENICS CFD代码用于计算CDS喷枪内部和超音速外部射流内部的流量:使用二维轴对称几何形状。燃烧模型假定化学平衡,而使用Chen-Kim k-e模型考虑了湍流效应,该模型适用于圆形射流的计算。第二步,使用内部代码来模拟流/粒子相互作用。最后,将在飞行中的粒子特性获得的数值结果与DPV2000系统获得的测量结果进行比较。

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