Hashimoto T, Nakano S, Hachijin M, Komatsu K, Mine Y, Hara H
Appl Opt. 1993 Oct 20;32(30):5936-43. doi: 10.1364/AO.32.005936.
A combustion-driven downstream-mixing CO(2) gasdynamic laser (GDL) is developed. When the total mass flow rate is ~ 2 kg/s and the combustion gas temperature is 1750 K, a small-signal gain coefficient of up to 0.6% cm(-1) and a laser output power as high as 11 kW are measured. To explain the experimental values, a mixing loss factor was previously introduced into an analytical model incorporating the three-temperature kinetics model. In the present study, a numerial analysis and further experiments are carried out to clarify the mixing behavior of two supersonic flows in the laser cavity. A measuring method for the average static temperature in the laser resonator is adapted, and it is made clear that, with the current state of supersonic nozzle manufacturing technology, two supersonic flows will not mix well.
研制了一种燃烧驱动的下游混合二氧化碳气动激光(GDL)。当总质量流量约为2 kg/s且燃烧气体温度为1750 K时,测得小信号增益系数高达0.6% cm⁻¹,激光输出功率高达11 kW。为了解释实验值,先前在包含三温度动力学模型的解析模型中引入了混合损失因子。在本研究中,进行了数值分析和进一步实验,以阐明激光腔内两股超声速流的混合行为。采用了一种测量激光谐振腔内平均静态温度的方法,结果表明,以目前超声速喷嘴制造技术的现状,两股超声速流不能很好地混合。