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Characterization of surface oil thickness distribution patterns observed during the Deepwater Horizon (MC-252) oil spill with aerial and satellite remote sensing

机译:利用航空和卫星遥感技术在“深水地平线”(MC-252)溢油过程中观察到的表面油厚度分布模式的特征

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摘要

Knowledge of the spatial distribution of oil thickness patterns within an on-water spill is of obvious importance for immediate spill response activities as well as for subsequent evaluation of the spill impacts. For long-lasting continuous spills like the 2010 3-month Deepwater Horizon (DWH) event in the Gulf of Mexico, it is also important to identify changes in the dominant oil features through time. This study utilized very high resolution (<= 5 m) aerial and satellite imagery acquired during the DWH spill to evaluate the shape, size and thickness of surface oil features that dominated the DWH slick. Results indicate that outside of the immediate spill source region, oil distributions did not encompass a broad, varied range of thicknesses. Instead, the oil separated into four primary, distinct characterizations: 1) invisible surface films detectable only with Synthetic Aperture Radar imaging because of the decreased surface backscatter, 2) thicker sheen & rainbow areas (<0.005 mm), 3) large regional areas of relatively thin, "metallic appearance" films (0.005-0.08 mm), and 4) strands of thick, emulsified oil (>1 mm) that were consistently hundreds of meters long but most commonly only 10-50 m wide. Where present within the slick footprint, each of the three distinct visible oil thickness classes maintained its shape characteristics both spatially (at different distances from the source and in different portions of the slick), and temporally (from mid-May through July 2010). The region over the source site tended to contain a more continuous range of oil thicknesses, however, our results indicate that the continuous injection of subsurface dispersants starting in late May significantly altered (lowered) that range. In addition to characterizing the oil thickness distribution patterns through the timeline of one of the world's largest oil spills, this paper also details the extension of using high resolution aerial imagery to calibrate medium resolution satellite data sources such as USA's Thematic Mapper (30 m) to provide larger-scale spatial views of major spills, and discusses implications for utilizing such data for oil spill characterizations and spill response. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于即时溢漏响应活动以及随后的溢流影响评估,了解溢水中油厚模式的空间分布非常重要。对于持续不断的漏油事件,例如2010年为期3个月的墨西哥湾深水地平线(DWH)事件,识别随时间变化的主要石油特征也很重要。这项研究利用在DWH溢油过程中获得的非常高分辨率(<= 5 m)的航空和卫星图像来评估主导DWH浮油的表面油特征的形状,大小和厚度。结果表明,在直接泄漏源区域之外,油的分布范围不广,厚度范围也不尽相同。取而代之的是,将油分为四个主要的不同特征:1)由于减少了表面背向散射,只能用合成孔径雷达成像检测到不可见的表面膜; 2)较厚的光泽和彩虹区域(<0.005毫米); 3)较大的区域区域。相对较薄的“金属外观”薄膜(0.005-0.08毫米),以及4)厚厚的乳化油(> 1毫米)线,这些线始终长数百米,但最常见的宽度只有10-50 m。在浮油足迹内的三个不同的可见油厚度类别中,每一个在空间上(距油源不同距​​离和浮油的不同部分)和时间上(从2010年5月中旬至2010年7月)均保持其形状特征。源区上方的区域倾向于包含更连续的油厚度范围,但是,我们的结果表明,从5月下旬开始连续注入地下分散剂会明显改变(降低)该范围。除了通过世界上最大的漏油事件之一的时间线来表征油厚分布模式外,本文还详细介绍了使用高分辨率航空影像校准中分辨率卫星数据源(例如美国的Thematic Mapper(30 m))的扩展。提供大型溢油事故的大范围空间视图,并讨论了利用此类数据进行溢油事故表征和溢油应急响应的意义。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Marine pollution bulletin》 |2016年第1期|162-176|共15页
  • 作者单位

    Ocean Imaging Corp, 13976 West Bowles Ave,Suite 100, Littleton, CO 80127 USA;

    Ocean Imaging Corp, 13976 West Bowles Ave,Suite 100, Littleton, CO 80127 USA;

    Calif Dept Fish & Wildlife, Off Spill Prevent & Response, 1700 K St,Suite 250, Sacramento, CA 95811 USA;

    Exxon Mobil Upstream Res Co, 22777 Springwood Village Pkwy, Spring, TX 77339 USA;

    Ocean Imaging Corp, 13976 West Bowles Ave,Suite 100, Littleton, CO 80127 USA;

    Water Mapping LLC, Tallahassee, FL USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oil spill; Remote sensing; Oil thickness distribution mapping; Deepwater Horizon; Subsea dispersants;

    机译:溢油;遥感;油厚分布图;深水层;海底分散剂;
  • 入库时间 2022-08-17 13:34:18

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