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Developing a robust proxy model of CO_2 injection: Coupling Box-Behnken design and a connectionist method

机译:开发强大的CO_2注入代理模型:Box-Behnken耦合设计和连接方法

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摘要

The CO2 based enhanced oil recovery methods (EORs) in the petroleum industry are considered as one of the efficient technologies for further production where the natural driving forces become weak. To determine which EOR method is more appropriate for a targeted reservoir, there is a need to develop a reliable and fast tool to predict the performance of the EOR methods due to assumptions and central processing time (CPU) time of reservoir simulations. We develop a promising approach for predicting the ultimate oil recovery factor of the miscible CO2 injection processes. To attain this goal, the least square support vector machine is used to build the proxy model. The Box-Behnken design as a branch of response surface methods is employed to design simulation runs for miscible CO2 injection processes, and the leverage method is applied to validate the proxy model in terms of statistical perspective. An artificial heterogeneous reservoir is used to perform compositional reservoir simulations. Five operational parameters of the miscible CO2 injection process are considered, including bottom-hole flowing pressure (BHP) of injection well (psi), CO2 injection rate (MMSCF/D), injected CO2 concentration (mole fraction), bottom-hole flowing pressure (BHP) of production well (psi), and oil production rate (STB/D). The developed proxy model can be employed to forecast the ultimate oil recovery factor of the miscible CO2 injection operations at the different rock, fluids, and process conditions. The proposed method appears to be an efficient simulation strategy that offers guidelines and screening criteria for the application of the miscible CO2 injection.
机译:石油行业中基于CO2的增强采油方法(EOR)被认为是自然驱动力变弱的进一步生产的有效技术之一。为了确定哪种EOR方法更适合目标油藏,由于油藏模拟的假设和中央处理时间(CPU)时间,需要开发一种可靠且快速的工具来预测EOR方法的性能。我们开发了一种有前景的方法来预测可混溶二氧化碳注入过程的最终采油率。为了达到这个目标,使用最小二乘支持向量机构建代理模型。 Box-Behnken设计作为响应面方法的一个分支,用于设计可混溶CO2注入过程的模拟运行,并利用杠杆方法从统计角度验证代理模型。人工非均质油藏用于进行组分油藏模拟。考虑了可混溶CO2注入过程的五个操作参数,包括注入井的井底流动压力(psi),CO2注入速率(MMSCF / D),注入的CO2浓度(摩尔分数),井底流动压力(BHP)的生产井(psi)和产油率(STB / D)。开发的代理模型可用于预测在不同岩石,流体和工艺条件下可混溶CO2注入操作的最终采油率。拟议的方法似乎是一种有效的模拟策略,可为混溶二氧化碳注入的应用提供指导和筛选标准。

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