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Probabilistic evaluation of geologic carbon dioxide storage capacities of saline formations in the Janggi Basin, Korea

机译:韩国Janggi盆地盐水形成地质二氧化碳储存能力的概率评价

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A series of probabilistic evaluation is performed using geologic formation modeling and grid-based Monte Carlo simulation to estimate geologic carbon dioxide (CO2) storage capacities of target saline formations at a prospective storage site in the Janggi Basin, Korea. The Janggi Conglomerate (Reservoir 1) and the lower member of the Seongdongri Formation (Reservoir 2), both of which consist of conglomerate, sandstone, siltstone, and mudstone, are selected as target saline formations for geologic CO2 storage at the site. The results of the probabilistic evaluation show that the theoretical fluid-phase CO2 storage capacities are significantly higher than the theoretical aqueous-phase CO2 storage capacities in both reservoirs, respectively. However, the effective fluid-phase CO2 storage capacities are nearly equal to the effective aqueous-phase CO2 storage capacities in both reservoirs, respectively. This arises because the aqueous-phase CO2 storage efficiency factors are much higher than the fluid-phase CO2 storage efficiency factors in both reservoirs, respectively.
机译:使用地质形成建模和基于网格的蒙特卡罗模拟进行了一系列概率评价,以估算韩国janggi盆地的潜在储存场所的靶盐水形成的地质二氧化碳(CO2)储存能力。 Janggi砾岩(贮存器1)和Seongdongri形成(贮存器2)的下部成员,两者组成的,由砾岩,砂岩,硅铁晶和泥岩组成,被选为位点的地质二氧化碳储存的目标盐水形成。概率评价结果表明,理论流体相二氧化碳储存能力显着高于两个贮存器中的理论水相二氧化碳储存容量。然而,有效的流体相CO2存储容量分别与两个储存器中的有效水相CO2存储容量几乎等于。这出现了,因为水相CO2存储效率因子分别远高于两个储层中的流体相二氧化碳储存效率因子。

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