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Innovative environmental sampling during the summer of 2010 in the western Gulf of Mexico

机译:墨西哥湾西部2010年夏季的创新环境采样

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The recent Gulf of Mexico (GOM) oil tragedy is emphasizing the importance of collecting sound, real-time ocean observations through collaborations of academia, government, and industry. Ocean observing systems (OOS) provide continuous data for various environmental, oceanographic, and atmospheric parameters. Many systems, such as moorings and buoys, are in fixed locations providing excellent time series, but are limited in spatial coverage. To improve spatial and temporal resolution, a Sea Sciences Inc. Inc. Acrobat system was deployed in summer 2010 to aide in the cross-shelf sampling of the western GOM coastal waters as part of a multi-year National Oceanographic and Atmospheric Administration (NOAA) to understand mechanisms controlling GOM hypoxia. Two weeklong surveys were conducted in the northern GOM, in which the Acrobat was deployed to determine the spatial and temporal extents of the Louisiana dead zone and the areal extent of the Texas hypoxic region. The data from this state-of-the-art cabled instrument combined with a real-time mooring, Galveston Instrument Garden for Environmental Monitoring (GIGEM OOS), deployed since 2009 provides valuable insight into the spatial and temporal scales of hypoxia on the Texas shelf, as well as emphasizes the need to developing management policies and future plans for surveying the northern GOM to accurately monitor processes responsible for hypoxia and to provide immediate data in the event of an unexpected environmental hazard.
机译:最近发生的墨西哥湾(GOM)石油悲剧强调了通过学术界,政府和工业界的合作来收集实时的,可靠的海洋观测资料的重要性。海洋观测系统(OOS)为各种环境,海洋学和大气参数提供连续数据。许多系统(例如系泊设备和浮标)都位于固定的位置,可提供出色的时间序列,但空间覆盖范围有限。为了提高空间和时间分辨率,作为多年国家海洋和大气管理局(NOAA)的一部分,2010年夏季部署了Sea Sciences Inc. Inc.的Acrobat系统,以协助对GOM西部沿海水域进行跨架采样。了解控制GOM缺氧的机制。在北部GOM进行了为期两周的调查,在其中部署了Acrobat,以确定路易斯安那州死区的时空范围和德克萨斯州缺氧地区的面积范围。自2009年以来部署的这种最先进的有线仪器结合实时系泊设备,即加尔维斯顿环境监测仪器花园(GIGEM OOS)的数据,提供了对得克萨斯大陆架缺氧的时空尺度的宝贵见解。 ,并强调需要制定管理政策和未来计划,以对北部GOM进行调查,以准确监控造成缺氧的过程,并在发生意料之外的环境危害时提供即时数据。

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    《OCEANS 2010》|2010年|P.1-10|共10页
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