首页> 外文会议>Conference on Gas and Chemical Lasers and Intense Beam Applications Ⅲ, Jan 22-24, 2002, San Jose, USA >Modeling of the gain, temperature, and iodine dissociation fraction in a supersonic chemical oxygen-iodine laser
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Modeling of the gain, temperature, and iodine dissociation fraction in a supersonic chemical oxygen-iodine laser

机译:超声化学氧碘激光器中增益,温度和碘解离分数的建模

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We report on a simple one-dimensional model developed for the fluid dynamics and chemical kinetics in the chemical oxygen iodine laser (COIL). Two different I_2 dissociation mechanisms are tested against the performance of a COIL device in our laboratory. The two dissociation mechanisms chosen are the celebrated mechanism of Heidner and the newly suggested mechanism of Heaven. The gain calculated using Heaven's dissociation mechanism is much lower than the measured one. Employing Heidner's mechanism, a surprisingly good agreement is obtained between the measured and calculated gain and temperature over a wide range of the flow parameters. Other predictions of the model (larger mixing efficiency and higher temperature with a leak opened downstream of the resonator and gain decrease along the flow) are also in agreement with the experimental observations.
机译:我们报告了一个简单的一维模型,该模型针对化学氧碘激光器(COIL)中的流体动力学和化学动力学而开发。在我们的实验室中,针对COIL设备的性能测试了两种不同的I_2解离机制。选择的两种解离机制是海德纳的著名机制和新提出的天堂机制。使用天堂的解离机制计算出的增益远低于测得的增益。利用Heidner的机理,在各种流量参数范围内,测量和计算的增益与温度之间获得了令人惊讶的良好一致性。该模型的其他预测(更大的混合效率和更高的温度,谐振器下游出现泄漏,并且沿流动方向的增益减小)也与实验观察一致。

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