Volume 49 Issue 2
Mar.  2020
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Guo Yilu, Tao Bangyi, Huang Haiqing, Wu Chaofan, Song Hong, Leng Jianxing. Wide angle volume scattering function measurement methods for particles in water[J]. Infrared and Laser Engineering, 2020, 49(2): 0203011-0203011. doi: 10.3788/IRLA202049.0203011
Citation: Guo Yilu, Tao Bangyi, Huang Haiqing, Wu Chaofan, Song Hong, Leng Jianxing. Wide angle volume scattering function measurement methods for particles in water[J]. Infrared and Laser Engineering, 2020, 49(2): 0203011-0203011. doi: 10.3788/IRLA202049.0203011

Wide angle volume scattering function measurement methods for particles in water

doi: 10.3788/IRLA202049.0203011
  • Received Date: 2019-10-14
  • Rev Recd Date: 2019-11-15
  • Publish Date: 2020-03-02
  • A system for measuring the volume scattering function of water with particles was built, helping the laser and the detector to avoid the shading of each other that causes the reduce of detection angle. A set of double-periscopic optical system was used to separate the detection plane of scattering plane from laser exiting plane, thus the shelter of the laser source was minimized. What's more, as the transmission light was exported from the system, the scattering light of water container was avoided so that the precision of backscatter measurement was promoted. The prism for exporting underwater light was designed according to the manufacturing techniques and by which the scattering measurement equipment was designed to measure the scattering light ranges from 3° to 178°. Next, according to the structure of the system and the principle of optical transmission in water, data rectifying methods was designed to rectify the deviation of measurement optical distances and light absorption. The rectified results were finally compared with simulated results of Mie scattering, the main source of deviation was analyzed and the improvement scheme of the system was proposed.
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    [3] Li Cai, Cao Wenxi, Jing Yu, et al. An instrument for in situ measuring the volume scattering function of water:design, calibration and primary experiments[J]. Sensors, 2012, 12(4):4514-4533.
    [4] Dai J, Li W, Gong B, et al. Measurement of the light scattering of single micrometer-sized particles captured with a microfluidic trap[J]. Optics Express, 2015, 23(23):30204-30215.
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Wide angle volume scattering function measurement methods for particles in water

doi: 10.3788/IRLA202049.0203011
  • 1. Ocean College, Zhejiang University, Zhoushan 316021, China;
  • 2. State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou 310012, China

Abstract: A system for measuring the volume scattering function of water with particles was built, helping the laser and the detector to avoid the shading of each other that causes the reduce of detection angle. A set of double-periscopic optical system was used to separate the detection plane of scattering plane from laser exiting plane, thus the shelter of the laser source was minimized. What's more, as the transmission light was exported from the system, the scattering light of water container was avoided so that the precision of backscatter measurement was promoted. The prism for exporting underwater light was designed according to the manufacturing techniques and by which the scattering measurement equipment was designed to measure the scattering light ranges from 3° to 178°. Next, according to the structure of the system and the principle of optical transmission in water, data rectifying methods was designed to rectify the deviation of measurement optical distances and light absorption. The rectified results were finally compared with simulated results of Mie scattering, the main source of deviation was analyzed and the improvement scheme of the system was proposed.

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