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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Numerical Simulation of Q-Switched Supersonic Flow Chemical Oxygen-Iodine Laser by Solving Time-Dependent Paraxial Wave Equation
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Numerical Simulation of Q-Switched Supersonic Flow Chemical Oxygen-Iodine Laser by Solving Time-Dependent Paraxial Wave Equation

机译:求解随时间变化的旁轴波方程的Q开关超音速流化学氧碘激光器的数值模拟

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摘要

The quality and power of an extracted beam from a Q-switched supersonic flow chemical oxygen-iodine laser have been investigated by numerical simulation. The flow system adopted in this study is the throat-mixing system proposed in a previous paper. Three-dimensional calculation for optics is coupled with one-dimensional calculation for gas flow including chemical reactions. Both geometric and wave optics are calculated and compared to assess the effects of diffraction. Wave optics is calculated with a time-dependent paraxial wave equation. The results indicate that wave and geometric optics are qualitatively similar in the time-dependent behavior of beam power. Quantitatively, it is found that diffraction reduces the extracted power by 9%. It is also found from the spreading half-angle of the beam for wave optics that the beam quality at a maximum power is equivalent to that of a plane wave; however, it is lower than that of continuous extraction.
机译:通过数值模拟研究了调Q超音速流化学氧碘激光器提取光束的质量和功率。在这项研究中采用的流动系统是先前论文中提出的喉咙混合系统。光学器件的三维计算与包括化学反应在内的气流的一维计算结合在一起。计算几何光学和波动光学,并进行比较以评估衍射效应。随时间变化的近轴波方程计算波光学。结果表明,波和几何光学在光束功率随时间变化的行为上在质量上相似。定量地发现,衍射将提取功率降低了9%。从波光学的光束的扩展半角还发现,最大功率下的光束质量等于平面波的质量。但是,它比连续提取要低。

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