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Simulation of CO2 migration for the planning of well test configurations at the South West Hub Project, Western Australia

机译:西澳大利亚西部枢纽项目井试验配置CO2迁移模拟

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Containment of injected CO2 at the South West Hub project in Western Australia is dependent on non-structural trapping mechanisms in the 1500 m thick Wonnerup Member of the Lesucur Sandstone due to uncertainties regarding the sealing character of the ~600 m thick overlying Yalgorup Member. Therefore, vertical migration distance and sweep efficiency and their impact on residual saturation and CO2 dissolution need to be properly assessed through reservoir simulations. We find that conventional Darcy-llow reservoir simulations result in significantly different predictions of plume migration compared to invasion percolation modelling when injecting at the base of the Wonnerup Member. If numerical predictions of the fate of injected CO2 are sensitive to the choice of model, care must be taken when selecting the methodology. One way to validate simulation predictions at a scale appropriate to the modelling is the use of well tests. In the Wonnerup Member a vertical migration test is recommended for consideration to confirm whether conventional reservoir simulations or percolation invasion modelling accurately predict the CO2 migration processes at the site. This test would involve a small injection of CO2 that is allowed to migrate upwards. The migration would be monitored with repeat pulsed neutron logging. This represents a new kind of test unique to the situation for the South West Hub site.
机译:在西澳大利亚州西南中心项目的遏制依赖于Lesucur砂岩的1500米厚银行成员中的非结构捕获机制,这是关于〜600米厚的余胶构件的密封特性的不确定性。因此,需要通过储层模拟适当地评估垂直迁移距离和扫描效率及其对残余饱和度和CO2溶解的影响。我们发现传统的Darcy-Llow储层模拟导致在Wonnerup成员底部注入时的侵入渗透模型相比,对血液迁移的显着不同预测。如果注射CO2的命运的数值预测对模型的选择敏感,则必须在选择方法时注意。以适合于建模的规模验证模拟预测的一种方法是使用井测试。在Wonnerup成员中,建议考虑垂直迁移测试以确认常规储层模拟或渗透入侵建模是否准确地预测现场的二氧化碳迁移过程。该测试将涉及允许向上迁移的CO 2小的CO 2。将通过重复脉冲中子测井监控迁移。这代表了西南枢纽现场局势独有的新型测试。

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