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3-D modelling of kerosene-fuelled HVOF thermal spray gun

机译:煤油燃料HVOF热喷枪的3-D建模

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Liquid-luelled high-velocity oxy-fuel (HVOF) thermal spraying systems are capable of generating more momentum output to powder particles in comparison with gas-fuelled systems. The use of low-cost fuel such as kerosene makes this technology particular attractive. High-quality coating requires thermal spraying systems delivering consistent performance as a result of the combustion during HVOF spraying. The combustion of kerosene is very complicated due to the variation of fuel composition and subsequently makes it extremely challenging for process control. This paper describes a 3-D simulation using mathematical models available in a commercial finite volume CFD code. The combustion and discrete particle models within the numerical code are applied to solve the combustion of kerosene and couple the motion of fuel droplets with the gas flow dynamics in a Lagrangian fashion. The effects of liquid fuel droplets on the thermodynamics of the combusting gas flow are examined thoroughly. (c) 2006 Elsevier Ltd. All rights reserved.
机译:与气体燃料系统相比,液状高速氧燃料(HVOF)热喷涂系统能够向粉末颗粒产生更多的动量输出。使用低成本燃料(例如煤油)使该技术特别有吸引力。高质量的涂层需要热喷涂系统,因为在HVOF喷涂过程中燃烧会产生稳定的性能。由于燃料成分的变化,煤油的燃烧非常复杂,因此使其对过程控制极具挑战性。本文介绍了使用商业有限体积CFD代码中可用的数学模型进行的3-D仿真。数值代码中的燃烧模型和离散粒子模型用于解决煤油的燃烧问题,并以拉格朗日方式将燃料小滴的运动与气流动力学耦合在一起。彻底检查了液体燃料滴对燃烧气流热力学的影响。 (c)2006 Elsevier Ltd.保留所有权利。

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