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A Compact Tunable Diode Laser Absorption Spectrometer to Monitor CO2 at 2.7 μm Wavelength in Hypersonic Flows

机译:紧凑型可调谐二极管激光吸收光谱仪可在高超声速流中监测2.7μm波长的CO2

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摘要

Since the beginning of the Mars planet exploration, the characterization of carbon dioxide hypersonic flows to simulate a spaceship’s Mars atmosphere entry conditions has been an important issue. We have developed a Tunable Diode Laser Absorption Spectrometer with a new room-temperature operating antimony-based distributed feedback laser (DFB) diode laser to characterize the velocity, the temperature and the density of such flows. This instrument has been tested during two measurement campaigns in a free piston tunnel cold hypersonic facility and in a high enthalpy arc jet wind tunnel. These tests also demonstrate the feasibility of mid-infrared fiber optics coupling of the spectrometer to a wind tunnel for integrated or local flow characterization with an optical probe placed in the flow.
机译:自从火星星球探索开始以来,表征二氧化碳高超音速流以模拟飞船进入火星大气层的条件一直是一个重要的问题。我们已经开发了一种可调谐二极管激光吸收光谱仪,该光谱仪配备了一种新型的,在室温下运行的基于锑的分布式反馈激光(DFB)二极管激光器,以表征此类流动的速度,温度和密度。该仪器已经在自由活塞隧道冷高超音速设施和高焓电弧喷射风洞中进行了两次测量。这些测试还证明了将光谱仪与风洞进行中红外光纤耦合以通过置于流中的光学探头进行集成或局部流表征的可行性。

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