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A Fast-Paced Workflow for Well Spacing and Completions Design Optimization in Unconventional Reservoirs

机译:用于井间距和完井设计优化的快节奏的工作流程

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Well spacing optimization is one of the most important considerations in unconventional field development.The Appalachian basin development has been increasingly prevalent in the last decade due to substantial production performance from Marcellus,Upper Devonian,and Utica/Point Pleasant Shale plays.The majority of operators have been in a manufacturing mode,where a standard well spacing and completions design have been applied to a field with less emphasis on optimizing the net asset value of the field.NAV can be improved through modeling and various optimization workflows such as numerical simulation,machine learning,and linear programming.The essence of field development and optimization is to use completions design,as well as well spacing,to optimize the net present value of the field based on current commodity pricing,capital expenditure,operating cost,cycle time,and net revenue interest.A substantial change in any of these essential factors must be studied to make sure the appropriate changes are accounted for in the field development and optimization.Determining the optimum well spacing that coincides with the completion design can often be challenging and time consuming due to complexity of some governing factors such as geology,engineering,and economic analysis.For instance,if optimum well spacing and completions design were developed in a geologically noisy and complex reservoir,the outcome may no longer be valid in a discreet and quiet area.In addition,if well spacing and completions design were developed for a high commodity pricing environment,performing the same workflow and evaluation at a lower commodity pricing would yield an increase in well spacing.The dynamic nature of the oil and gas industry,specifically these essential factors,could cause complications with selecting the optimum well spacing and completion design to maximize the shareholder's value.Therefore,a fast-paced and dynamic workflow has been developed,that can be applied in different shale reservoirs,to maximize the present value of these assets.This paper will walk through the step-bystep process that can be applied to any unconventional shale play to optimize the field considering geology,engineering,and economic analysis.The objective of this paper is to go through a fast-paced optimization workflow,starting with a fracture model,coupled with a production model using numerical simulation to obtain a calibrated model,and finally performing detailed economic and sensitivity analysis to obtain the optimum well spacing and completions design,which would yield the highest net present value of the field.
机译:井距的优化是非常规领域development.The阿巴拉契亚盆地发展的最重要因素之一是在过去十年中越来越普遍,由于从马塞勒斯,上泥盆统和尤蒂卡/波因特普莱森页岩plays.The广大运营商的实质性生产性能已经在制造模式,其中一个标准的井距和完井设计上优化field.NAV的资产净值已应用于一个场与较少强调可以通过建模和优化的各种工作流程,如数值模拟,机器可以提高学习和线性油田开发和优化的programming.The实质是利用完井设计,以及井距,以优化基于当前商品定价,资本支出,运营成本,周期时间字段的净现值,以及净营收interest.A在任何这些要素实质性的变化,必须加以研究,以确保appropr莱特变动计入在该领域的发展和optimization.Determining井距与完成设计相一致的最佳往往是具有挑战性和耗时由于一些管理因素,如地质,工程的复杂性,以及经济analysis.For例如,如果最佳井距和完井设计是在一个地质嘈杂和复杂油气藏开发,结果可能不再是一个有效的谨慎和安静area.In此外,如果井距和完井设计是为高商品定价环境中开发,在执行相同的工作流程和评估在一个较低的商品定价将在石油和天然气行业的良好spacing.The动态特性产量的增加,特别是这些要素,可能导致与选择最佳井距,并完成设计最大化股东价值的并发症。因此,一个快节奏和动态工作流已经研制成功,可以在不同的S应用硬朗水库,最大限度地提高这些assets.This本文将通过可以适用于任何非常规页岩发挥优化领域考虑地质,工程分步bystep过程走的现值,而本文的经济浅析浅析目标是要经过一个快节奏的优化工作流程,与裂缝模型,利用数值模拟加上生产模型开始,以获得校准的模型,最后进行详细的经济和灵敏度分析,以获得最佳的井距和完井的设计,这将产生磁场的最高净现值。

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