共查询到14条相似文献,搜索用时 62 毫秒
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A theoretical analysis of a downstream-mixing 16-μm CO2 gasdynamic laser revealed the possibility of utilizing the downstream-mixing scheme for the generation of 9.4-μm radiation using a CO2 gasdynamic laser. The flow-field has been analyzed using complete two-dimensional, unsteady laminar form of Navier-Stokes
equations coupled with the finite rate vibrational kinetic equations. The analysis showed that integrated small-signal gain
of 11.5m−1 for Lorentzian broadening and 4.8m−1 considering Voigt function can be obtained for N2 reservoir temperature of 2000°K and velocity ratio 1:1 between the CO2 and N2 mixing streams. These results (presented in graphs) clearly highlight the large potential of downstream-mixing CO2 gasdynamic laser for 9.4-μm laser generation. 相似文献
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An analytical method has been proposed to optimise the small-signaloptical gain of CO2-N2 gasdynamic lasers (gdl) employing two-dimensional (2D) wedge nozzles. Following our earlier work the equations governing the steady, inviscid, quasi-one-dimensional
flow in the wedge nozzle of thegdl are reduced to a universal form so that their solutions depend on a single unifying parameter. These equations are solved
numerically to obtain similar solutions for the various flow quantities, which variables are subsequently used to optimize
the small-signal-gain. The corresponding optimum values like reservoir pressure and temperature and 2D nozzle area ratio also
have been predicted and graphed for a wide range of laser gas compositions, with either H2O or He as the catalyst. A large number of graphs are presented which may be used to obtain the optimum values of small signal
gain for a wide range of laser compositions without further computations. 相似文献
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