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New Processes and Tools for Design and Execution to Optimize Hydraulic Fracturing Treatments in Shale Reservoirs

机译:设计和执行的新工艺和工具,以优化页岩储层中的水力压裂处理

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The use of horizontal drilling and hydraulic fracturing has been credited for much of the success achieved in ultra-low permeability shale reservoirs,making it economically possible to produce natural gas,natural gas liquids,and crude oil. Although thousands of wells have been drilled and completed using these technologies,there are relatively few modeling tools available to the industry designed specifically for these applications,leaving much of the optimization process to trial- and-error techniques that are costly and time-consuming. A focused effort to develop useful software tools for industry professionals to better design and more reliably predict well performance has resulted in a new generation of hydraulic fracture and reservoir simulation tools built specifically for these complex well geometries and difficult reservoir conditions.These tools have also been designed to provide information that can enable completion engineers to make informed decisions to help ensure the desired results are achieved and well performance maximized. The workflow is focused on designing stimulation treatments that maximize the stimulated volume of the reservoir around the wellbore and also maximizes the connected fracture area within this volume.This combination can result in increased production rates while also increasing the possible ultimate recovery that can be achieved from a given wellbore, thus having a significant impact on the economic success of a well and an entire asset. This paper provides details on these new tools and workflows,as well as the results of early trials that have yielded impressive results,even when applied in an established shale field within the US.
机译:使用水平钻井和水力压裂已经归功于超低渗透性页岩储层实现的大部分成功,使得经济地生产天然气,天然气液体和原油。虽然使用这些技术已经钻探并完成了数千个井,但为这些应用设计的行业提供了相对较少的建模工具,留下了大部分优化过程,以试验和耗时耗时的试验技术。一个专注的努力,为行业专业人员开发有用的软件工具,以更好的设计,更可靠地预测性能,这导致了新一代的液压骨折和储层模拟工具,专门为这些复杂的井几何形状和困难的水库条件而设计。这些工具也是如此旨在提供能够使完成工程师能够做出明智的决策的信息,以帮助确保实现所需的结果,并且最大化的性能。工作流程集中在设计刺激处理,以最大化井筒周围的储存量的刺激体积,并且还可以在该体积内最大化连接的断裂区域。这组合可以导致生产率增加,同时还增加了可以实现的可能性最终的恢复一个给定的井眼,因此对井和整个资产的经济成功产生了重大影响。本文提供了有关这些新工具和工作流程的详细信息,以及早期试验结果,即使在美国内部的已建立的页岩字段中应用,也会产生令人印象深刻的结果。

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