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Highly efficient cw chemical oxygen - iodine laser with transsonic iodine injection and a nitrogen buffer

机译:高效连续化学氧碘激光器,具有超音速碘注入和氮缓冲液

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摘要

Methods of increasing the efficiency of low-pressure chemical oxygen-iodine lasers (COILS) with transsonic injection of molecular iodine, in which nitrogen is used as a buffer gas, are studied. A two-layer gas-dynamic model is used for a parametric analysis of physicochemical processes occurring in the transsonic iodine injector and in the COIL resonator, including mixing and generation of radiation. The 3D-RANS computer simulation software is used to study the flow structures resulting from an injection of iodine-containing flow into the transsonic zone of the oxygen nozzle. Experiments with a 10-kW modified laser have resulted in a chemical efficiency of 31.5% for a lasing power of 13.5 kW. The results of experimental studies of the cryosorption COIL exhaust system are presented.
机译:研究了通过超声速注入分子碘来提高低压化学氧碘激光器(COILS)的效率的方法,其中氮气用作缓冲气体。两层气体动力学模型用于对在超音速碘注射器和COIL谐振器中发生的物理化学过程进行参数分析,包括辐射的混合和产生。 3D-RANS计算机仿真软件用于研究将含碘流注入氧气喷嘴的超音速区域后产生的流结构。使用10 kW修改型激光器进行的实验在13.5 kW的激光功率下的化学效率为31.5%。介绍了低温吸附COIL排气系统的实验研究结果。

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