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LIDAR for remote sensing of contaminations on water and earth surfaces taking place during oil-gas production

机译:激光雷达用于遥感油气生产过程中发生的水和地表污染物

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Remote sensing of contaminations on water and earth surfaces (oil spills, films) taking place during oil-gas extraction is an interesting and actual problem. This problem may be solved by using different methods of optical spectroscopy, including: •Raman scattering; •light induced breakdown spectroscopy (LIBS); •fluorescence spectroscopy. Fluorescence Light Detection and Ranging (LIDAR) LIDARs are successfully used for remote sensing of chemical and biological substances at atmosphere. A new laser induced fluorescence (LIF) KA-14 LIDAR system for detecting of oil spills on the sea surface was employed at the National Aviation Academy of Azerbaijan. LIDAR's parameters are as follows: •laser CFR 200- type QUANTEL, λ = 355 nm, beam Ø = 5.35 mm, f = 20 Hz, pulse duration τ = 7 ns, pulse power 60 mJ; •diameter of Newtonian- type telescope is 200 mm; •collimator expansion of the laser beam diameter- not less than 3; •angle range of telescope measurements relative to horizon: from -20 to +20 degree; •spectral range of measurements: from 380 to 750 nm, number of spectral channels- 32; •maximum range of measurements- not less than 250 m. This LIDAR is the first performing these kind of research not only on the Azerbaijan beach of Caspian sea, but also on the earth places of Absheron peninsula, where oil-gas production takes place. We hope that the performance of LIDAR will have an International recognition and will make noticeable input on the International Research of Caspian sea surfaces.
机译:油气提取过程中对水和土壤表面的污染物(溢油,薄膜)进行遥感监测是一个有趣且实际的问题。此问题可以通过使用不同的光谱学方法来解决,包括:•拉曼散射; •光致击穿光谱法(LIBS); •荧光光谱。荧光光检测和测距(LIDAR)LIDAR已成功用于遥感大气中的化学和生物物质。阿塞拜疆国家航空学院采用了一种新的激光诱导荧光(LIF)KA-14 LIDAR系统,用于检测海面溢油。 LIDAR的参数如下:•激光CFR 200型QUANTEL,λ= 355 nm,光束Ø= 5.35 mm,f = 20 Hz,脉冲持续时间τ= 7 ns,脉冲功率60 mJ; •牛顿型望远镜的直径为200毫米; •准直仪的激光束直径不小于3; •望远镜相对于地平线的测量角度范围:-20至+20度; •光谱范围:从380到750 nm,光谱通道数-32; •最大测量范围-不小于250 m。该LIDAR不仅是在里海的阿塞拜疆海滩上,而且是在发生石油生产的阿布歇隆半岛的大地上,首次进行此类研究。我们希望LIDAR的性能能够得到国际认可,并在里海海面国际研究中做出重要的贡献。

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