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Layout of CCS monitoring infrastructure with highest probability of detecting a footprint of a CO2 leak in a varying marine environment

机译:CCS监控基础设施的布局,具有在变化的海洋环境中检测到CO2泄漏足迹的可能性最高

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Monitoring of the marine environment for indications of a leak, or precursors of a leak, will be an intrinsic part of any subsea CO2 storage projects. A real challenge will be quantification of the probability of a given monitoring program to detect a leak and to design the program accordingly. The task complicates by the number of pathways to the surface, difficulties to estimate probabilities of leaks and fluxes, and predicting the fluctuating footprint of a leak. The objective is to present a procedure for optimizing the layout of a fixed array of chemical sensors on the seafloor, using the probability of detecting a leak as metric. A synthetic map from the North Sea is used as a basis for probable leakage points, while the spatial footprint is based on results from a General Circulation Model. Compared to an equally spaced array the probability of detecting a leak can be nearly doubled by an optimal placement of the available sensors. It is not necessarily best to place the first in the location of the highest probable leakage point, one sensor can monitor several potential leakage points. The need for a thorough baseline in order to reduce the detection threshold is shown. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:监测海洋环境中是否存在泄漏迹象或泄漏的前兆,将是任何海底二氧化碳封存项目的内在部分。真正的挑战是量化给定监视程序检测泄漏并相应设计程序的概率。该任务因通向地面的通道数量,估计泄漏和通量的可能性以及预测泄漏的波动足迹而变得复杂。目的是提出一种程序,以检测泄漏的概率为度量标准,以优化海底化学传感器固定阵列的布局。北海的合成地图被用作可能的泄漏点的基础,而空间足迹则基于通用环流模型的结果。与等间距的阵列相比,检测泄漏的可能性可以通过可用传感器的最佳放置几乎翻倍。不一定最好将第一个放置在最高可能泄漏点的位置,一个传感器可以监视多个潜在泄漏点。显示了需要一个彻底的基线以降低检测阈值。 (C)2015作者。由Elsevier Ltd.发布

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