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Numerical study on the performance of nozzle flow for supersonic chemical oxygen-iodine lasers 被引量:1
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作者 Zongmin Hu Junming Lā +2 位作者 Zonglin Jiang Rho-Shin Myong Tae-Hwan Cho 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第2期133-142,共10页
Laser performance is greatly dependent on its operating conditions due to the strong coupling among multi- physics such as gas-dynamics, chemical reaction kinetics and optics in the mixing nozzle of COIL. In this pape... Laser performance is greatly dependent on its operating conditions due to the strong coupling among multi- physics such as gas-dynamics, chemical reaction kinetics and optics in the mixing nozzle of COIL. In this paper, 3D CFD technology is used to simulate the mixing and reactive flow of subsonic cross jet scheme at different conditions. Results obtained show that the jet penetration depth plays a dominant role in the spatial distribution of small signal gains. In the case of over-penetration, unsteady flow structures are induced by impinging between the opposing jets. The optimum spatial distribution of the chemical performance cannot be obtained even if the full penetration condition is achieved through the subsonic transverse jet mixing scheme in the COIL nozzle flow. 展开更多
关键词 Chemical oxygen-iodine laser (COIL) Numerical simulation Small signal gains Unsteady structures
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Semi-gas kinetics model for performance modeling of flowing chemical oxygen-iodine lasers(COIL)
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作者 GAO Zhi HU Limin SHEN Yiqing 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2004年第3期338-351,共14页
A semi-gas kinetics (SGK) model for performance analyses of flowing chemical oxygen-iodine laser (COIL) is presented. In this model, the oxygen-iodine reaction gas flow is treated as a continuous medium, and the effec... A semi-gas kinetics (SGK) model for performance analyses of flowing chemical oxygen-iodine laser (COIL) is presented. In this model, the oxygen-iodine reaction gas flow is treated as a continuous medium, and the effect of thermal motions of particles of different laser energy levels on the performances of the COIL is included and the velocity distribution function equations are solved by using the double-parameter perturbational method. For a premixed flow, effects of different chemical reaction systems, different gain saturation models and temperature, pressure, yield of excited oxygen, iodine concentration and frequency-shift on the performances of the COIL are computed, and the calculated output power agrees well with the experimental data. The results indicate that the power extraction of the SGK model considering 21 reactions is close to those when only the reversible pumping reaction is considered, while different gain saturation models and adjustable parameters greatly affect the output power, the optimal threshold gain range, and the length of power extraction. 展开更多
关键词 chemical oxygen-iodine laser (COIL) semi-gas kinetics (SGK) model rate equation (RE) model homogeneous broadening INHOMOGENEOUS broadening PERFORMANCE analysis spectral line BROADENING (SLB) model.
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