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NUMERICAL MODELING OF ARC PLASMA GENERATOR FOR CHEMICAL LASER APPLICATIONS

机译:激光等离子体弧发生器的数值模拟

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The results of the numerical modeling of arc discharge phenomenon relevant to hydrogen fluoride/deuterium fluoride (HF/DF) laser applications are given. The overall mechanics of arc discharge phenomena on the basis of numerical modeling employing the commercial code COMSOL is discussed. The equations for a 2D axisymmetric, weakly compressible, laminar flow with heat transfer and the coupled hydrodynamic and electromagnetic equations are solved using the SIMPLE algorithm. The variations in the material properties, temperature, and velocity due to the generated arc are studied. A comparison of the results obtained with those from the studies available in the literature validates the computational data. Since each designed plasma arc tunnel is unique in itself and specific in application, this would enable one to alter arc discharge parameters to optimize a specific laser.
机译:给出了与氟化氢/氟化氘(HF / DF)激光应用相关的电弧放电现象的数值模拟结果。基于商业代码COMSOL的数值建模,讨论了电弧放电现象的整体机理。使用SIMPLE算法求解带有传热的二维轴对称,弱可压缩层流方程,以及耦合的流体动力学和电磁方程。研究了由于产生的电弧导致的材料特性,温度和速度的变化。将结果与文献中的研究结果进行比较,可以验证计算数据。由于每个设计的等离子弧隧道本身都是独特的并且在应用中是特定的,因此这将使人们能够更改电弧放电参数以优化特定的激光器。

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