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Numerical investigation of a fast-axial-flow CWCO2 laser

机译:快速轴流CWCO2激光器的数值研究

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This paper presents the results of the calculation of the parameters of the active medium of a fast-axial-flow CO2 laser using numerical methods in the framework of a one-dimensional approximation of the set of continuity equations, Bernoulli equation, equation of gas state, energy equation and multi-temperature rate equations with regard to diffusion for the gas flow in the cylindrical discharge tube. The spatial distribution of the small-signal gain and gas temperature along the gas flow direction have been calculated for a given set of initial conditions, namely, gas flow velocity, gas pressure and the tube diameter. In addition, the dependence of small-signal gain, the asymmetric stretch vibrational temperature of CO2 (T-3) and the gas temperature on the discharge current were studied. (C) 2007 Elsevier Ltd. All rights reserved.
机译:本文在连续性方程组,伯努利方程组,气态方程组的一维近似的框架内,介绍了使用数值方法计算快速轴流CO2激光器的活性介质参数的结果。 ,能量方程式和多温度率方程式,这些误差与圆柱状放电管中气流的扩散有关。对于给定的一组初始条件,即气流速度,气压和管径,已经计算出沿气流方向的小信号增益和气体温度的空间分布。此外,研究了小信号增益,CO2(T-3)的不对称拉伸振动温度和气体温度对放电电流的依赖性。 (C)2007 Elsevier Ltd.保留所有权利。

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