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首页> 外文期刊>Geophysical Research Letters >Formation dynamics of subsurface hydrocarbon intrusions following the Deepwater Horizon blowout
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Formation dynamics of subsurface hydrocarbon intrusions following the Deepwater Horizon blowout

机译:深水地平线井喷之后地下油气侵入的形成动力学

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Hydrocarbons released following the Deepwater Horizon (DH) blowout were found in deep, subsurface horizontal intrusions, yet there has been little discussion about how these intrusions formed. We have combined measured (or estimated) observations from the DH release with empirical relationships developed from previous lab experiments to identify the mechanisms responsible for intrusion formation and to characterize the DH plume. Results indicate that the intrusions originate from a stratification-dominated multiphase plume characterized by multiple subsurface intrusions containing dissolved gas and oil along with small droplets of liquid oil. Unlike earlier lab measurements, where the potential density in ambient water decreased linearly with elevation, at the DH site it varied quadratically. We have modified our method for estimating intrusion elevation under these conditions and the resulting estimates agree with observations that the majority of the hydrocarbons were found between 800 and 1200 m.
机译:在深部地下水平侵入体中发现了深水地平线(DH)井喷之后释放的碳氢化合物,但关于这些侵入体如何形成的讨论很少。我们将对DH释放的测量(或估计)观察结果与以前的实验室实验得出的经验关系结合起来,以确定造成入侵形成的机制并表征DH羽流。结果表明,这些侵入物来自分层为主的多相羽流,其特征是多个地下侵入物,其中包含溶解的气体和石油以及少量的液态油滴。与早期的实验室测量不同,环境水中的潜在密度随海拔高度呈线性下降,而在DH位置则呈二次方变化。我们已经修改了在这些条件下估算侵入高度的方法,得出的估算结果与观察到的大多数碳氢化合物位于800至1200 m之间的观察结果一致。

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