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ICD CompletionsOptimization for an Offshore Abu Dhabi Well Using Dynamic Modeling

机译:ICD完成优化Abu Dhabi使用动态建模

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A study was conducted to determine the optimum re-completion for an offshore Abu Dhabi well. The candidate well was completed as open hole in a complex carbonate reservoir with faults and fractures and suffering from rapid increases in water cut. To quantify the value of re-completing the well with ICDs completions, a dynamic simulation modeling and optimization workflow was applied. To evaluate the best completion design, the dynamic model was refined and history matched in the sector area of the well using multi-segmented well technique. The number of downhole compartments (sections between packers), location of packers and ICDs flow area were simultaneously optimized to determine the best completion options for the candidate well using an objective function that included both; the value of oil and the cost of water. The ICD flow area per compartment was reverse engineered into an appropriate number of ICD joints and set of nozzles as part of the completion design process. The workflow provided a quantitative method for choosing the most appropriate horizontal well completion and demonstrated significant value for installing downhole flow control devices. The presentation of the results in terms of oil gain and water reduction for the different objective functions provided a clear indication about the best completion options, depending on the cost or aversion for water production versus the value of oil.
机译:进行了一项研究,以确定对海上阿布扎比的最佳重新完成。候选井在复杂的碳酸盐储层中被完成,具有缺陷和骨折,患有水切口的快速增加。为了量化重新完成ICDS完成良好的值,应用了动态仿真建模和优化工作流程。为了评估最佳的完整设计,使用多分段井技术的良好扇区区域的精制和历史匹配。井下隔间的数量(包装器之间的部分),同时优化包装器和ICDS流量区域的位置,以确定使用包括两者的目标函数来确定候选井的最佳完成选项;石油价值和水成本。作为完井设计过程的一部分,每隔间的ICD流量面积被反向设计成适当数量的ICD接头和一组喷嘴。工作流程提供了一种选择最合适的水平井完成的定量方法,并显示了用于安装井下流量控制装置的显着值。对不同客观职能的油增益和降水结果的结果提供了关于最佳完整选项的明确指示,具体取决于水资源的成本或厌恶与油的价值。

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