首页> 外文期刊>Journal of atmospheric and oceanic technology >The 2D-S (Stereo) Probe: Design and Preliminary Tests of a New Airborne, High-Speed, High-Resolution Particle Imaging Probe
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The 2D-S (Stereo) Probe: Design and Preliminary Tests of a New Airborne, High-Speed, High-Resolution Particle Imaging Probe

机译:2D-S(立体声)探头:新型机载,高速,高分辨率的粒子成像探头的设计和初步测试

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The design, laboratory calibrations, and flight tests of a new optical imaging instrument, the two-dimensional stereo (2D-S) probe, are presented. Two orthogonal laser beams cross in the middle of the sample volume. Custom, high-speed, 128-photodiode linear arrays and electronics produce shadowgraph images with true 10-μm pixel resolution at aircraft speeds up to 250 m s~(-1). An overlap region is defined by the two laser beams, improving the sample volume boundaries and sizing of small ( < ~ 100 μm) particles, compared to conventional optical array probes. The stereo views of particles in the overlap region can also improve determination of three-dimensional properties of some particles. Data collected by three research aircraft are examined and discussed. The 2D-S sees fine details of ice crystals and small water drops coexisting in mixed-phase cloud. Measurements in warm cumuli collected by the NCAR C-130 during the Rain in Cumulus over the Ocean (RICO) project provide a test bed to compare the 2D-S with 2D cloud (2D-C) and 260X probes. The 2D-S sees thousands of cloud drops < ~ 150 μm when the 2D-C and 260X probes see few or none. The data suggest that particle images and size distributions ranging from 25 to ~150 μm and collected at airspeeds > 100 m s~(-1) by the 2D-C and 260X probes are probably (erroneously) generated from out-of-focus particles. Development of the 2D-S is in its infancy, and much work needs to be done to quantify its performance and generate software to analyze data.
机译:介绍了一种新型光学成像仪器二维立体(2D-S)探头的设计,实验室校准和飞行测试。两个正交的激光束在样品体积的中间交叉。定制的高速128光电二极管线性阵列和电子设备可在飞机速度高达250 m s〜(-1)的情况下产生具有真实10μm像素分辨率的阴影图像。与传统的光学阵列探头相比,两个激光束定义了一个重叠区域,从而改善了样品体积边界并减小了小颗粒(<〜100μm)的尺寸。重叠区域中粒子的立体视图还可以改善某些粒子的三维特性的确定。检查并讨论了三架研究飞机收集的数据。 2D-S可以看到精细的冰晶细节和混合相云中并存的小水滴。 NCAR C-130在海洋积雨中的雨水(RICO)项目期间对温暖积云的测量提供了一个测试平台,用于比较2D-S与2D云(2D-C)和260X探头。当2D-C和260X探头几乎看不见或没有探头时,2D-S可以看到数千个<〜150μm的云滴。数据表明2D-C和260X探针以空速> 100 m s〜(-1)收集的粒子图像和尺寸分布范围从25到〜150μm,可能是(错误地)由散焦粒子产生的。 2D-S的开发尚处于起步阶段,需要做大量工作来量化其性能并生成用于分析数据的软件。

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