论文标题

横向溢流建模中的水平运输

Horizontal transport in oil-spill modeling

论文作者

Duran, Rodrigo, Nordam, Tor, Serra, Mattia, Barker, Chris

论文摘要

只要可以使用准确的洋流和表面风,就可以成功地完成海洋中的石油运输 - 这通常是一个挑战。有时可以通过参数化缺失物理学来修复不足的洋流 - 这通常还不够。在本章中,我们关注一些主要问题,这些主要问题是石油溢油建模者面临的,这是确定何时速度可能缺少重要物理的准确轨迹,或者何时速度具有局部误差,从而导致较大的轨迹错误。驱动海洋运动的物理机制的基础可能有助于识别缺乏某些类型物理学的水流和补救措施。我们对海洋上厘米运动运动的理解的最新进展支持了非常规的参数化。我们举例说明了2003 Point Wells油的漏油事件,直到最近才无法解释。当速度实际代表轨迹强迫机制时,基于拉格朗日相干结构理论的先进拉格朗日技术可以通过识别可能决定流体变形的吸引力区域来绕过局部速度误差。客观的欧拉相干结构的有用性通过重新审视墨西哥湾2010年深水地平线事故,并提前八天从不完善的高度速度速度预测出突出的运输模式,从而证明了溢油建模社区的实用性。

Simulating oil transport in the ocean can be done successfully provided that accurate ocean currents and surface winds are available -- this is often too big of a challenge. Deficient ocean currents can sometimes be remediated by parameterizing missing physics -- this is often not enough. In this chapter, we focus on some of the main problems oil-spill modelers face, which is determining accurate trajectories when the velocity may be missing important physics, or when the velocity has localized errors that result in large trajectory errors. A foundation of physical mechanisms driving motion in the ocean may help identify currents lacking certain types of physics, and the remedy. Recent progress in our understanding of motion in the upper centimeters of the ocean supports unconventional parameterizations; we present as an example the 2003 Point Wells oil spill which had remained unexplained until recently. When the velocity realistically represents trajectory forcing mechanisms, advanced Lagrangian techniques that build on the theory of Lagrangian Coherent Structures can bypass localized velocity errors by identifying regions of attraction likely to dictate fluid deformation. The usefulness of Objective Eulerian Coherent Structures is demonstrated to the oil-spill modeling community by revisiting the 2010 Deepwater Horizon accident in the Gulf of Mexico and predicting a prominent transport pattern from an imperfect altimetry velocity eight days in advance.

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