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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Numerical simulation of carbon dioxide injection for enhanced gas recovery (CO_2-EGR) in Altmark natural gas field
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Numerical simulation of carbon dioxide injection for enhanced gas recovery (CO_2-EGR) in Altmark natural gas field

机译:Altmark天然气田注入二氧化碳提高采收率的数值模拟(CO_2-EGR)

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This paper studied the CO_2-EGR in Altmark natural gas field with numerical simulations. The hydromechanical coupled simulations were run using a linked simulator TOUGH2MP-FLAC3D. In order to consider the gas mixing process, EOS7C was implemented in TOUGH2MP. A multi-layered 3D model (4.4 km 9 2 km 9 1 km) which consists of the whole reservoir, caprock and base rock was generated based on a history-matched PETREL model, originally built by GDF SUEZ E&P Deutschland GmbH for Altmark natural gas field. The model is heterogeneous and discretized into 26,015 grid blocks. In the simulation, 100,000 t CO_2 was injected in the reservoir through well S13 within 2 years, while gas was produced from the well S14. Some sensitivity analyses were also carried out. Simulation results show that CO_2 tends to migrate toward the production well S14 along a NW-SE fault. It reached the observation wells S1 and S16 after 2 years, but no breakthrough occurred in the production well. After 2 years of CO_2 injection, the reservoir pressure increased by 2.5 bar, which is beneficial for gas recovery. The largest uplift (1 mm) occurred at the bottom of the caprock. The deformation was small (elastic) and caprock integrity was not affected. With the injection rate doubled the average pressure increased by 5.3 bar. Even then the CO_2 did not reach the production well S14 after 2 years of injection. It could be concluded that the previous flow field was established during the primary gas production history. This former flow field, including CO_2 injection/ CH4 production rate during CO_2-EGR and fault directions and intensity are the most important factors affecting the CO_2 transport.
机译:通过数值模拟研究了Altmark天然气田中的CO_2-EGR。使用链接的模拟器TOUGH2MP-FLAC3D进行了水力耦合模拟。为了考虑气体混合过程,在TOUGH2MP中实现了EOS7C。基于历史匹配的PETREL模型(最初由GDF SUEZ E&P Deutschland GmbH为Altmark天然气建立),生成了一个包含整个储层,盖层和基岩的多层3D模型(4.4 km 9 2 km 9 1 km)。领域。该模型是异构模型,离散为26,015个网格块。在模拟中,在2年内通过S13井将100,000吨CO_2注入了储层,同时从S14井产出了天然气。还进行了一些敏感性分析。模拟结果表明,CO_2倾向于沿着NW-SE断层向生产井S14迁移。两年后到达了观测井S1和S16,但在生产井中没有突破。注入CO_2 2年后,储层压力增加了2.5 bar,这对天然气采收有利。最大的隆起(1毫米)发生在盖层的底部。变形小(弹性),盖层完整性不受影响。随着注入速率的增加,平均压力增加了5.3 bar。即使这样,在注入2年后,CO_2仍未到达生产井S14。可以得出结论,先前的流场是在一次天然气生产历史中建立的。以前的流场,包括CO_2-EGR期间的CO_2注入/ CH4生成速率以及断层的方向和强度是影响CO_2传输的最重要因素。

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