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Performance of an Ocean Buoyancy Glider in a Coastal Region: Application to the Gulf of Mexico Hypoxic Zone

机译:沿海地区浮力滑翔机的性能:在墨西哥湾低氧区的应用

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The Gulf of Mexico Coastal Hypoxia Glider Experiment was designed to assess the feasibility of using ocean glider technology in the coastal hypoxic zone of the northern Gulf of Mexico in Summer/Fall 2014. The objectives were (1) to coordinate and operate multiple autonomous buoyancy ocean gliders in depths less than 50 m and (2) to determine how close to the bottom gliders can reliably reach without making contact. Strong vertical and horizontal stratification gradients, strong coastal currents, and the low-oxygen conditions that occur within the lower water column characterize the coastal area of the northern Gulf of Mexico. These environmental conditions combine with the presence of more than 5,000 surface piercing oil/gas structures to make piloting and navigation in the region challenging. We quantify glider performance to assess the usefulness of buoyancy gliders to address the National Oceanic and Atmospheric Administration Action Plan goal to monitor the spatial extent, duration, and severity of the Gulf hypoxic zone. We find that the gliders, despite the operational challenges, were consistently able to travel from the surface to the oxygen-depleted depths of sub-pycnocline waters, that is, within 2 m of the ocean bottom. Our assessment is that gliders are able to provide real-time observations suitable to monitor coastal hypoxia.
机译:墨西哥湾沿海低氧滑翔机实验旨在评估2014年夏季/秋季在墨西哥湾北部沿海低氧区使用海洋滑翔机技术的可行性。目标是(1)协调和操作多种自主浮力海洋深度小于50 m的滑翔机和(2)确定在不接触的情况下可以可靠地接近底部滑翔机。墨西哥湾北部沿海地区的特征是强烈的垂直和水平分层梯度,强大的沿海水流以及较低水柱内发生的低氧条件。这些环境条件与超过5,000个表面可穿透的油气结构的存在相结合,使该地区的驾驶和导航面临挑战。我们对滑翔机性能进行量化,以评估浮力滑翔机对解决国家海洋和大气管理局行动计划目标的有效性,以监测海湾低氧区的空间范围,持续时间和严重程度。我们发现,尽管存在操作上的挑战,滑翔机仍能够始终如一地从地表运动到次氯比林水域的缺氧深度,即海底2 m以内。我们的评估是,滑翔机能够提供适合监视沿海缺氧的实时观测。

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