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Transport of dissolved gas and its ecological impact after a gas release from deepwater

机译:从深水释放气体后溶解气体的运输及其生态影响

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Previous models on simulating gas releases in deepwater were not focused on the dissolved component and its impact on water quality. This paper presents a new model developed for simulating the transport/spread of dissolved methane from an underwater release and its impact on dissolved oxygen in ambient water. Methane dissolves into ambient water from gas phase, direct from hydrate phase, and from dissociating hydrates formed earlier. Dissolved methane affects the dissolved oxygen levels in ambient water due to microbial interaction and possible direct absorption of oxygen into methane bubbles. We use new model simulations of Deepspill field experiments to compare with instantaneous profiles which were unpublished until now. The comparisons are very good with a short time lag, but are within the acceptable discrepancy for models for emergency response and contingency planning. Scenario simulations show the effect on dissolved oxygen due to different methane release situations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:以前的模拟深水中气体释放的模型并未关注溶解组分及其对水质的影响。本文提出了一种新模型,用于模拟水下释放的甲烷的迁移/扩散及其对环境水中溶解氧的影响。甲烷从气相,直接从水合物相以及从较早形成的水合物解离而溶解到环境水中。由于微生物之间的相互作用以及氧气可能直接吸收到甲烷气泡中,因此溶解的甲烷会影响环境水中的溶解氧水平。我们使用Deepspill现场实验的新模型模拟与迄今为止尚未发布的瞬时剖面进行比较。这种比较在短时间间隔内非常好,但在应急响应和应急计划模型的可接受差异内。方案模拟显示了由于甲烷释放情况不同而对溶解氧的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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