首页> 外文会议>Conference on Gas and Chemical Lasers and Intense Beam Applications Ⅲ, Jan 22-24, 2002, San Jose, USA >Gain and temperature in a slit nozzle supersonic chemical oxygen-iodine laser with transonic and supersonic injection of iodine
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Gain and temperature in a slit nozzle supersonic chemical oxygen-iodine laser with transonic and supersonic injection of iodine

机译:跨音速和超声波注入碘的狭缝喷嘴超声化学氧碘激光器的增益和温度

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摘要

Spatial distributions of the gain and temperature across the flow were studied for transonic and supersonic schemes of the iodine injection in a slit nozzle supersonic chemical oxygen-iodine laser as a function of the iodine and secondary nitrogen flow rate, jet penetration parameter and gas pumping rate. The mixing efficiency for supersonic injection of iodine (~0.85) is found to be much larger than for transonic injection (~0.5), the maximum values of the gain being~0.65%/cm for both injection schemes. Measurements of the gain distribution as a function of the iodine molar flow rate nI_2 were carried out. For transonic injection the optimal value of nI_2 at the flow centerline is smaller than that at the off axis location. The temperature is distributed homogeneously across the flow, increasing only in the narrow boundary layers near the walls. Opening a leak downstream of the cavity in order to decrease the Mach number results in a decrease of the gain and increase of the temperature. The mixing efficiency in this case (~0.8) is much larger than for closed leak.
机译:研究了狭缝喷嘴超音速化学氧碘激光器中碘注入的跨音速和超音速方案的增益和温度在整个流中的空间分布,该函数是碘和二次氮流量,射流穿透参数和抽气速率的函数。发现超声速注入碘的混合效率(〜0.85)比跨音速注入(〜0.5)大得多,两种注入方案的增益最大值均为〜0.65%/ cm。进行了作为碘摩尔流量nI_2的函数的增益分布的测量。对于跨音速注入,流中心线处的nI_2最优值小于离轴位置处的最优值。温度在整个流中均匀分布,仅在壁附近的狭窄边界层中升高。为了减小马赫数而在空腔下游打开泄漏会导致增益降低和温度升高。在这种情况下,混合效率(〜0.8)比封闭泄漏要大得多。

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