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首页> 外文期刊>Environmental Engineering Science >Evaluating Chemical Dispersant Efficacy in an Experimental Wave Tank: 1, Dispersant Effectiveness as a Function of Energy Dissipation Rate
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Evaluating Chemical Dispersant Efficacy in an Experimental Wave Tank: 1, Dispersant Effectiveness as a Function of Energy Dissipation Rate

机译:评价实验波箱中的化学分散剂功效:1,分散剂功效与能量耗散率的关系

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摘要

Numerous laboratory test systems have been developed for the comparison of efficacy between various chemical oil dispersant formulations. However, for the assessment of chemical dispersant effectiveness under realistic sea state, test protocols are required to produce hydrodynamic conditions close to the mixing, transport, and dilution effects found in the natural environment. To this end, we have designed and constructed an experimental wave tank system capable of generating waves of different energy levels, ranging from regular nonbreaking waves to plunging breakers. The hydrodynamics of these wave conditions were characterized using an autocorrelation function method applied to in situ velocity measurements. We report here an investigation of the effectiveness of two chemical dispersants (Corexit 9500 and SPC 1000) on two crude oils (weathered MESA and fresh ANS) under three different wave conditions in the wave tank operated in batch mode. Corexit 9500 dispersed approximately 75% of the weathered MESA and more than 90% of the fresh ANS crude, and SPC 1000 dispersed about 53 and 64%, respectively. Under control conditions (absence of chemical dispersant), only 10 to 20% of the crude oils were dispersed. Quantitative relationships were established between dispersant effectiveness and energy dissipation rate under the different simulated wave conditions. These relationships are essential for the development of accurate predictive models on dispersant effectiveness and operational guidelines for dispersant use.
机译:为了比较各种化学油分散剂配方之间的功效,已经开发了许多实验室测试系统。但是,为了评估实际海况下的化学分散剂效果,需要进行试验规程以产生接近自然环境中的混合,运输和稀释效果的流体动力学条件。为此,我们设计并建造了一个实验性的波箱系统,该系统能够产生不同能级的波,从常规的不间断波到不断下降的断路器。使用自相关函数方法对这些波浪条件的流体动力学特性进行了现场速度测量。我们在此报告了在批处理模式下运行的三个不同波动条件下,两种化学分散剂(Corexit 9500和SPC 1000)对两种原油(风化的MESA和新鲜的ANS)的有效性的调查。 Corexit 9500分散了约75%的风化MESA和90%以上的新鲜ANS原油,而SPC 1000分别分散了约53%和64%。在控制条件下(无化学分散剂),仅分散了10%至20%的原油。在不同的模拟波浪条件下,建立了分散剂有效性与能量耗散率之间的定量关系。这些关系对于开发精确的分散剂有效性预测模型和分散剂使用操作指南至关重要。

著录项

  • 来源
    《Environmental Engineering Science》 |2009年第6期|1139-1148|共10页
  • 作者单位

    Centre for Offshore Oil and Gas Environmental Research, Bedford Institute of Oceanography, Fisheries and Oceans (DFO) Canada, 1 Challenger Drive, Dartmouth, NS B2Y 4A2, Canada;

    Centre for Offshore Oil and Gas Environmental Research, Bedford Institute of Oceanography, Fisheries and Oceans (DFO) Canada, Dartmouth, Canada;

    Centre for Offshore Oil and Gas Environmental Research, Bedford Institute of Oceanography, Fisheries and Oceans (DFO) Canada, Dartmouth, Canada;

    Centre for Offshore Oil and Gas Environmental Research, Bedford Institute of Oceanography, Fisheries and Oceans (DFO) Canada, Dartmouth, Canada;

    Department of Civil and Environmental Engineering, Temple University, Philadelphia, Pennsylvania;

    National Risk Management Research Laboratory, US EPA, Cincinnati, Ohio;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    oil spill; dispersant effectiveness; energy dissipation rate; breaking waves;

    机译:漏油事件;分散剂效力;能量耗散率;碎波;

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