Oceanic Lidar: Theory and Experiment
Study on the upper ocean is of great significance to the global climate change and carbon cycle. Lidar can be used to effectively detect depth-resolved optical properties of the ocean. However, both theory and experiment of oceanic lidar are limited by complex multiple scattering. Several progresses...
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Veröffentlicht in: | EPJ Web of conferences 2020, Vol.237, p.7021 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Study on the upper ocean is of great significance to the global climate change and carbon cycle. Lidar can be used to effectively detect depth-resolved optical properties of the ocean. However, both theory and experiment of oceanic lidar are limited by complex multiple scattering. Several progresses by Zhejiang University will be illustrated in this paper: 1) a polarized lidar system was developed, and a Monte Carlo model and a radiative transfer model were established (Zhou, et al.
remote sensing
, 2019; Zhou, et al.
Journal of remote sensing
, 2019; Xu, et al. and Liu, et al.
Journal of remote sensing
, 2019); 2) Cross validations are demonstrated to verify the availability of the lidar system and models (Liu, et al.
IEEE TGRS
, 2019); 3) phase function effects on backscatter and attenuation are studied considering multiple scattering, respectively (Liu, et al.
Optics Express
, 2019). Oceanic lidar is proven to have great potential in marine studies. |
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ISSN: | 2100-014X 2101-6275 2100-014X |
DOI: | 10.1051/epjconf/202023707021 |