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Uncertainty Analysis using Design of Experiments to Assess the Development Plan of a North Sea Field

机译:利用实验设计评估北海田的发展计划的不确定性分析

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This study assessed the impact of static and dynamic variables in EUR and NPV in the development plan of a North Sea offshore field with 81 m of water,light oil crude of 40.5 API and 510 SCF/STB of GOR comprised of sandstones from a shallow marine environment in anticline structure separated to the northeast and southwest by a pair of normal faults.The analysis is conducted through the application of different experimental design techniques and the preparation of a comparison between them.Uncertainty analysis has been prepared to characterize the appropriate range for nine variables that affect the oil recovery and net present value of the field development.A Folded Plackett-Burman design was prepared to screen the initial nine variables; the linear regression results show that the oil water contact,permeability anisotropy and net to gross are the significant variables.Also,the residual analysis demonstrated that the proxy equation should be improved to have better predictability in the non-sampled space.In consequence,a D-Optimal and a Central Composite experimental design were prepared for the three significant variables.The regression results show better coefficient correlation and lower least square errors in the D-Optimal design using a full quadratic model and confirmed the oil water contact as the most significant variable of the field.Finally,Monte Carlo Simulation was performed in the proxy model from the D-Optimal design,which resulted in an expected value ultimate recovery of 357 MMSTB.The paper presents an exciting workflow to analyze different experimental design techniques,compare them and use the most suitable to prepare the development plan of a field.
机译:本研究评估了EUR和NPV在北海近海领域的发展计划中的静态和动态变量的影响,其中81米的水,轻油原油为40.5 API,510个SCF / STB由浅海洋的砂岩组成环境在背斜结构分离到东北部和通过一对正常faults.The分析的西南是通过不同的实验设计技术的应用和them.Uncertainty分析之间的比较的制备进行已经准备表征合适的范围为9影响现场开发的石油回收和净目前价值的变量。准备筛选初始九个变量的折叠Plackett-Burman设计;线性回归结果表明,油水接触,渗透性各向异性和载体是重要的变化.ALSO,残余分析表明应改善代理方程,以在非采样空间中具有更好的可预测性。在后果,a d-优化和中心组合实验设计制备了三个显著variables.The回归结果显示出更好的相关系数,并使用一个完整的二次模型降低在d-优化设计最小二乘错误并确认油水接触的最显著场的变量。最后,在D-Optimal设计中,在代理模型中进行了Monte Carlo仿真,导致预期的357mmstb的最终升值恢复。本文提出了一个令人兴奋的工作流程来分析不同的实验设计技术,比较它们并使用最适合准备场的发展计划。

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