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Probing the subsurface ocean processes using ocean LIDARS

机译:使用海洋楣索探讨了地下海洋流程

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Subsurface profiling LIDAR systems extend our understanding of ocean processes "below" the ocean surface of SST and ocean color. Time-gated LIDAR backscattering intensity has been shown to define the bio-optical ocean layers and characterize subsurface processes. The interaction between the mixed layer depth (MLD) using vertical temperature structures and LIDAR optical layers provides a critical link between physical and bio-optical processes. We evaluated the capability of LIDAR penetration to reach the MLD on a global basis. Penetration depths of LIDAR were estimated using attenuation depths derived from global monthly ocean color averages which were assumed vertically homogenous. Climatology of LIDAR penetration depth was combined with the monthly mixed layer depth determined from the Global NCOM ocean circulation model. Global NCOM output was used to construct monthly averaged MLD climatologies from 2002 to 2010. Results show how monthly changes in MLD and LIDAR penetration depths are coupled for different regions of the global ocean. For example, the time-lag in LIDAR penetration depths is linked to shallowing of the MLD in the North Atlantic Bloom. We estimate the percentage of global ocean waters where different LIDAR system configurations can reach below the MLD. Results illustrate the potential performance of LIDAR systems to "probe" the subsurface for global waters which help in LIDAR design. Subsurface processes such as mixing and biological growth and decay have significant impact on what we observe at the ocean surface. LIDAR profiling should provide the new dimension for monitoring global ocean processes.
机译:地下分析激光雷达系统将我们对海洋过程的理解“下面”SST和海洋颜色的海洋表面。已经示出了时通的激光雷达反向散射强度定义生物光学海面层并表征地下过程。混合层深度(MLD)之间使用垂直温度结构和LIDAR光学层之间的相互作用提供了物理和生物光学过程之间的关键链接。我们评估了LIDAR渗透的能力,以全球范围内到达MLD。利用垂直均匀的全球每月海洋颜色平均值衍生的衰减深度估计激光雷达的渗透深度。激光突发渗透深度的气候学与全球NCOM海洋循环模型确定的月度混合层深度相结合。全球NCOM产出从2002年到2010年用于构建每月平均的MLD气候。结果表明MLD和LIDAR渗透深度的每月变化如何耦合到全球海洋的不同地区。例如,LIDAR渗透深度的时间滞后与北大西洋盛开的MLD膨胀有关。我们估计不同的LIDAR系统配置可以达到MLD的不同LIDAR系统配置的百分比。结果说明了LIDAR系统的潜在性能,“探测”全球水域的地下,这有助于激光雷达设计。诸如混合和生物生长和衰减的地下过程对我们在海洋表面观察到的显着影响。 LIDAR分析应该为监测全球海洋流程提供新的维度。

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