首页> 外文学位 >The spring phytoplankton bloom and vertical velocities in the stratified and deep convecting Labrador Sea, as observed by Seagliders.
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The spring phytoplankton bloom and vertical velocities in the stratified and deep convecting Labrador Sea, as observed by Seagliders.

机译:滑行者观察到,在分层和深对流的拉布拉多海中,春季浮游植物开花并出现垂直速度。

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摘要

The Labrador Sea is a critical region in the world's ocean: a region where the effects of climate change are seen quickly and strikingly, and where dynamic processes that affect climate change are observed. A recent effect of climate change is the increase of freshwater to high latitudes, as Arctic pack ice and Greenland glaciers melt at accelerating rates. In times of rapid climate change, it is more important than ever to understand the influence these changes have on the status quo of ecosystems and physical processes. The focus of this thesis is to examine the current state of the Labrador Sea biological and physical system through in situ Seaglider and surface satellite observations. The influence of physical processes, including increased freshwater runoff, on the biological system is the subject of chapters 2 and 3. The deep convective process, one of the downwelling branches of the global oceanic overturning circulation is the subject of chapters 4 and 5. Seaglider is capable of making novel measurements of vertical water velocity to better than 1 cm s-1 accuracy. Using these measurements along with hydrographic observations, we describe deep convection during the 2004--05 winter. Besides the scientific merits of the results shown here, this thesis also demonstrates the ability of Seaglider to observe bio-optical properties and vertical velocities, two relatively newer observations in the oceanography literature.
机译:拉布拉多海是世界海洋中的一个关键区域:在该区域中,可以迅速而惊人地看到气候变化的影响,并且可以观察到影响气候变化的动态过程。气候变化的最新影响是,随着北极浮冰和格陵兰冰川以加速的速度融化,淡水增加到了高纬度地区。在快速的气候变化时期,了解这些变化对生态系统和物理过程的现状的影响比以往任何时候都更为重要。本文的重点是通过原位海滑翔机和地面卫星观测研究拉布拉多海生物和物理系统的现状。物理过程(包括增加的淡水径流)对生物系统的影响是第2章和第3章的主题。深对流过程是全球海洋翻转环流的下行分支之一,是第4章和第5章的主题。能够对垂直水速进行新颖的测量,精度超过1 cm s-1。使用这些测量值和水文观测资料,我们描述了2004--05年冬季的深对流。除了这里显示的结果的科学价值外,本论文还证明了Seaglider观测生物光学特性和垂直速度的能力,这是海洋学文献中两个相对较新的观测结果。

著录项

  • 作者

    Frajka-Williams, Eleanor.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Climate Change.;Biology Oceanography.;Physical Oceanography.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:21

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