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Advanced Modeling of Production Induced Pressure Depletion and Well Spacing Impact on Infill Wells in Spraberry,Permian Basin

机译:生产诱导的生产诱导压力耗尽和井间距对斯文克里溪流井井井间距的先进建模

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Since early 2016,commodity prices have been gradually increasing,and the Permian Basin has become the most active basin for unconventional horizontal well development.As the plays in the basin are developed,new infill wells are drilled near pre-existing wells(known as "parent wells").The impact of pressure depletion caused by adjacent existing producers may have a larger role in the performance of these new infill wells.How the various well spacing impact with the degree of reservoir pressure depletion from parent well is more important than ever for operators to optimize the completion design.Through data analytics and comprehensive fracture/reservoir modeling this paper studies how changes in well spacing and proppant volume in the Spraberry,a main formation in the Permian Basin,will impact new infill well performance.The studies in this paper are focused on the Midland Basin.A public database was used to identify the number of parent and child wells in the Midland basin.Data analysis of production normalized by total proppant and lateral length shows that parent wells outperform infill,or child,wells.To further understand the relationship between parent and child wells,a reservoir dataset for the Spraberry formation was used to build a hydraulic fracture and reservoir simulation model for both the parent well and a two-well infill pad.After production history matching a P50 type well as the parent well,three periods of production depletion were modeled(6 months,3 years and 5 years)to understand the timing impact on the infill well production.A geomechanical finite-element model(FEM)was then used to quantify the changes to the magnitude and azimuth of the in-situ stresses from the various reservoir depletion scenarios.A two-well infill pad was then simulated into the altered stress field next to the parent well at various spacings between the parent and child wells.A sensitivity was then performed with different stimulation job sizes to understand the volume impact on created complex fracture propagation and total system recovery.This study can help operators understand how well spacing,reservoir depletion,and completion job size impact the infill well performance so they can optimize their infill well completion strategy.
机译:自2016年初以来,商品价格一直在逐步增加,二叠纪盆地已成为广泛的横向发展的最活跃的盆地。盆地的戏剧是开发的,新的灌注井在预先存在的井附近钻井(称为“父母井“)。由邻近的现有生产者引起的压力消耗的影响可能在这些新填充井的性能方面具有更大的作用。如何与父母井的储层压力耗尽的各种井间距影响更为重要对于运营商来优化完成设计。推出数据分析和综合骨折/储层模型本文研究了斯麦克里盆地的主要地层井间距和支撑剂体积的变化,将影响新的填充性好。研究本文的重点是米德兰·盆地。将公共数据库用于识别米德兰盆地中父母井的数量由总支撑剂和横向长度标准化的生产结果表明,家长井优​​于填充物,或儿童,井。要进一步了解父母和儿童井之间的关系,用于制造液压骨折和储层模拟的储层数据集典型的级井和两个井填料垫。在生产历史中匹配P50型良好的生产历史,三个生产耗竭时期(6个月,3年和5年),了解时机的影响然后,填充良好生产。然后使用地质力学有限元模型(FEM)来量化来自各种水库耗尽情况的原位应力的幅度和方位角的变化。然后模拟两个井填料垫在父母和儿童井之间的各种间距的父阱旁边的改变应力场。然后用不同的刺激工作尺寸进行灵敏度以了解卷Impac T上创建复杂的骨折传播和总系统恢复。这项研究可以帮助操作员了解间距,储层耗尽和完成工作尺寸如何影响填充井的性能,因此它们可以优化其填充井完成策略。

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