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首页> 外文期刊>Petroleum Geoscience >Fault-seal analysis for CO2 storage: an example from the Troll area, Norwegian Continental Shelf
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Fault-seal analysis for CO2 storage: an example from the Troll area, Norwegian Continental Shelf

机译:二氧化碳封存的断层密封分析:以挪威大陆架巨魔地区为例

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摘要

Fault seal plays a critical part in hydrocarbon traps, and the same will be true for CO2 storage. The standard workflow for prediction of capillary seal of hydrocarbons can be readily adapted to prediction of CO2 seal since the fluid properties of CO2 at reservoir temperatures and pressures are within the range shown by hydrocarbons. The workflow is applied in a feasibility study into the proposed CO2 storage in the Johansen Formation of the Troll Field.Computation of Shale Gouge Ratio (SGR) over the fault surfaces, in combination with juxtaposition diagrams, was used to estimate the sealing potential of faults cutting the Johansen Formation. SGR values were converted to potential CO2 column heights that might be trapped at each fault. Column heights are generally less than 100 m at each fault, allowing a cross-fault migration route from the Johansen Sand via the Statfjord Formation, Cook Formation and Brent Group.Analysis of in-situ stresses suggests that the faults in the Troll Field are not close to failure and therefore up-dip leakage of CO2 is unlikely. Extremely large CO2 columns (>300 m) would be required to change this stress stability, and across-fault capillary leakage would occur first.
机译:断层密封在碳氢化合物捕集阱中起着至关重要的作用,对于二氧化碳的储存也是如此。因为在储层温度和压力下CO2的流体性质在碳氢化合物显示的范围内,所以用于预测碳氢化合物毛细管密封的标准工作流程可以很容易地适应于预测CO2密封。该工作流程在可行性研究中用于拟议的Troll油田Johansen组中的CO2储存。断层表面页岩泥比(SGR)的计算,与并列图相结合,用于估计断层的封闭潜力削减约翰森组。 SGR值已转换为可能在每个断层处困住的潜在CO2柱高。每个断层的柱高通常小于100 m,允许从约翰逊砂岩穿过Statfjord组,库克组和布伦特组的跨断层迁移路径。对原地应力的分析表明,巨魔场中的断层不是接近故障,因此不太可能向上泄漏CO2。要改变这种应力稳定性,将需要使用非常大的二氧化碳色谱柱(> 300 m),并且首先会发生断层毛细管泄漏。

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