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Acoustic measurement of the Deepwater Horizon Macondo well flow rate

机译:Deepwater Horizo​​n Macondo井流速的声学测量

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摘要

On May 31,2010, a direct acoustic measurement method was used to quantify fluid leakage rate from the Deepwater Horizon Macondo well prior to removal of its broken riser. This method utilized an acoustic imaging sonar and acoustic Doppler sonar operating onboard a remotely operated vehicle for noncontact measurement of flow cross-section and velocity from the well's two leak sites. Over 2,500 sonar cross-sections and over 85,000 Doppler velocity measurements were recofded during the acquisition process. These data were then applied to turbulent jet and plume flow models to account for entrained water and calculate a combined hydrocarbon flow rate from the two leak sites at seafloor conditions. Based on the chemical composition of end-member samples collected from within the well, this bulk volumetric rate was then normalized to account for contributions from gases and condensates at initial leak source conditions. Results from this investigation indicate that on May 31, 2010, the well's oil flow rate was approximately 0.10 ±0.017 m~3s~(-1) at seafloor conditions, or approximately 85± 15 kgs~(-1) (7.4±1.3 Ggd~(-1)), equivalent to approximately 57,000± 9,800 barrels of oil per day at surface conditions. End-member chemical composition indicates that this oil release rate was accompanied by approximately an additional 24 ± 4.2 kg s~(-1) (2.1± 0.37 Gg d~(-1)) of natural gas (methane through pentanes), yielding a total hydrocarbon release rate of 110 ±19 kgs~(-1) (9.5 ±1.6 Ggd~(-1)).
机译:2010年5月31日,在拆除破损的立管之前,使用直接的声学测量方法来量化Deepwater Horizo​​n Macondo井的渗漏率。该方法利用在远程操作车辆上运行的声波成像声纳和多普勒声纳进行非接触式测量,测量井的两个泄漏点的流量横截面和流速。在采集过程中,超过2500个声纳横截面和超过85,000个多普勒速度测量值被重新设置。然后将这些数据应用于湍流射流和羽流模型,以计算夹带的水量,并在海底条件下从两个泄漏点计算出碳氢化合物的总流速。根据从井内收集的末端成员样品的化学成分,然后将此总体积率归一化,以考虑初始泄漏源条件下气体和冷凝物的贡献。该调查的结果表明,2010年5月31日,在海底条件下,该油井的油流量约为0.10±0.017 m〜3s〜(-1),约为85±15 kgs〜(-1)(7.4±1.3 Ggd 〜(-1)),相当于地面条件下每天约57,000±9,800桶油。末端成员的化学组成表明,该油的释放速率还伴有大约24±4.2 kg s〜(-1)(2.1±0.37 gg d〜(-1))的天然气(甲烷和戊烷),产生总碳氢化合物释放速率为110±19 kgs〜(-1)(9.5±1.6 Ggd〜(-1))。

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  • 作者单位

    Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Marine Sciences, University of Georgia, Athens, GA 30602;

    Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139;

    Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543,Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD 21218;

    Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

    Department of Applied Ocean Physics and Engineering, Woods Hole Oceanographic Institution, Woods Hole, MA 02543;

  • 收录信息 美国《科学引文索引》(SCI);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

    gulf of mexico; oil spill; buoyant plume; buoyant jet; subsurface;

    机译:墨西哥湾;漏油事件;浮羽浮力喷射地下;
  • 入库时间 2022-08-18 00:40:33

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