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Remote sensing of hydrogen gas concentration distribution by Raman lidar

机译:拉曼激光雷达对氢气浓度分布的遥感

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Hydrogen is expected to become an energy source in the next generation. Although hydrogen gas is a combustible gas with a large explosion concentration range, leakage is presently monitored by contact type gas sensors. The technology for locating a leak and remote sensing of gas concentration distribution is required in case of hydrogen gas leaks. In this study, remote sensing technology of hydrogen gas concentration distribution using a Raman lidar was developed. The lidar system consisted of a pulsed Nd:YAG laser of wavelength 354.7 ran and a Galilean telescope of aperture 170 mm. The system could detect hydrogen gas by vibrational Raman scattering. In this method, hydrogen gas concentration could be measured based on the ratio of the Raman scattering signals from hydrogen gas and from atmospheric nitrogen, which were simultaneously measured. In this manner, the geometrical form factor of the biaxial lidar and the instrumental function were canceled. Hydrogen gas concentration of 0.6-100% could be measured at a distance 13m using this system.
机译:氢有望成为下一代的能源。尽管氢气是爆炸浓度范围大的可燃气体,但是目前通过接触式气体传感器来监测泄漏。在氢气泄漏的情况下,需要一种用于定位泄漏和远程监测气体浓度分布的技术。在这项研究中,开发了使用拉曼激光雷达的氢气浓度分布遥感技术。激光雷达系统由波长为354.7nm的Nd:YAG脉冲激光和孔径为170 mm的伽利略望远镜组成。该系统可以通过振动拉曼散射检测氢气。在该方法中,可以基于同时测量的来自氢气和来自大气氮的拉曼散射信号的比率来测量氢气浓度。以这种方式,消除了双轴激光雷达的几何形状因数和仪器功能。使用该系统可以在13m的距离处测量出0.6-100%的氢气浓度。

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