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Effects of fluid/solid couplings on the plasma flow inside a direct current plasma gun

机译:流体/固体联轴器对直流等离子枪内等离子流的影响

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The present study is devoted to the modelling of the arc formation in a direct current plasma gun newly commercialized by Saint-Gobain Coating Solutions (Avignon, France). The CFD computations were performed using the FLUENT code and the electromagnetic coupling was taken into account on the basis of a three dimensional model. The main advances compared to previous works performed on the same subject are numerous. First of all, whereas most of earlier models include the arc region only, the CFD domain was here extended to the gas injection region (i.e. upstream part of the gun, including the gas injection sleeve), thus allowing a better description of the effect of the gas injection on the plasma flow. Second, whereas earlier works include the fluid domain only, the present model includes a fluid/solid coupling in the anode. In particular, the thermal and electromagnetic equations are solved not only in the fluid parts but also in the tungsten and copper parts of the anode. This change was found to be important because the internal surface of the anode is no more a boundary of the domain. Thus, its temperature (and electric potential) becomes variable and is thus not necessarily imposed. Finally, the implemented model provides interesting results describing the arc behaviour inside the plasma gun.
机译:本研究致力于通过Saint-gobain涂层解决方案(Avignon,France)新商业化的直流等离子枪中的弧形形成的建模。使用流畅的代码执行CFD计算,并且基于三维模型考虑电磁耦合。与在同一主题上执行的先前作品相比的主要进步是众多。首先,虽然较早的型号的大部分内容仅包括弧区域,但是CFD域在此延伸到气体喷射区域(即枪的上游部分,包括气体注射套管),从而允许更好地描述气体喷射对等离子体流动。其次,而前面的作品仅包括流体域,本模型包括阳极中的流体/固体耦合。特别地,热和电磁方程不仅在流体部件中解决,而且在阳极的钨和铜部件中解决。发现这种变化很重要,因为阳极的内表面不再是域的边界。因此,其温度(和电位)变得可变,因此不一定施加。最后,实现的模型提供了描述等离子枪内部的电弧行为的有趣结果。

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