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Variation of population inversion and gain characteristics with D_2 injection angle in DF chemical laser cavity

机译:DF化学激光腔中种群反转和增益特性随D_2注入角的变化

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Nowadays, a chemical laser has been developed not only for a strategic military purpose, but also as a manufacturing tool in industrial usage due to its high power lasing characteristics. In order to increase the laser beam power in the chemical laser systems, the mixing efficiency of fuel and oxidant should be improved, since more excited molecules are followed by high mixing efficiency. Basically, the production of a lot of excited molecules in the laser cavity results from the high mass flow rates of fuel and oxidant based on efficient mixing and chemical reaction. Therefore, in order to supply higher mass flow to the chemical laser cavity, a radial-expansion nozzle array was used and examined here, not a planar nozzle array which has been widely employed until now. The laser beam generation in this system is achieved by mixing F atoms from supersonic nozzle with D_2 molecules ejecting from holes of round-bended supply lines which are distributed in zigzag configuration, which would extend the reaction zone. Consequently, more excited molecules are expected to be produced, so the intensity of population inversion will be higher. Since the two-stream injection angle was considered to influence the performance of supersonic combustor, the effects of D_2 injection angles against the main F flow on mixing enhancement, population inversion and gain characteristics were numerically investigated in this study. The results were discussed by comparison with three cases of D_2 injection angles such as 10°, 20° and 40° against the main flow direction. As the injection angle increases, two counter-balancing effects were observed.
机译:如今,由于其高功率激光特性,化学激光不仅被用于战略军事目的,而且还被用作工业用途的制造工具。为了增加化学激光系统中的激光束功率,应该提高燃料和氧化剂的混合效率,因为随之而来的是更多的受激分子,因此具有很高的混合效率。基本上,激光腔中大量激发分子的产生是基于有效混合和化学反应的燃料和氧化剂的高质量流速产生的。因此,为了向化学激光腔提供更高的质量流量,在此使用并检查了径向膨胀喷嘴阵列,而不是迄今为止已经广泛使用的平面喷嘴阵列。该系统中的激光束的产生是通过将超音速喷嘴中的F原子与以曲折形分布的圆形弯曲供气孔中喷出的D_2分子混合而实现的,这将扩展反应区。因此,预期会产生更多的激发分子,因此种群反转的强度将更高。由于认为两流喷射角会影响超声速燃烧器的性能,因此,本研究对D_2喷射角对主F流对混合增强,种群反转和增益特性的影响进行了数值研究。通过与三种D_2注入角相对于主流方向的情况进行比较,讨论了D_2注入角的情况,例如10°,20°和40°。随着喷射角的增加,观察到两个平衡作用。

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