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Importance of Well Spacing and Orientation for Multi-Lateral Pads on Production: Learnings from Production Analysis and Numerical Modelling of the Mannville Coal Measures, South Central Alberta

机译:井间垫井间距和方向的重要性:南部中部曼内煤炭措施生产分析与数值建模的学习

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The modelling results from numerical simulations of the Early Cretaceous, Mannville coal measures with anisotropic permeability provide insights into development strategies not readily visualized or otherwise intuitive. The complex relationships between water and gas production, the contribution from multiple coal seams as well as from organic rich shales, and the impact of well interference combined with anisotropic fracture permeability are investigated through a series of numerical simulations of four well-pads (on the corners of a square mile of land with decreasing well spacing from 1, 3, to 4 laterals per pad). After 25 years of production, the two pads with optimally-oriented laterals with respect to the fracture permeability anisotropy produce 61% of the recovered gas for the 1 lateral/pad model, 52% for the 3 laterals/pad model, and 50% for the 4 laterals/pad model. Downspacing has a greater impact on increasing the gas production from pads with the poorly-oriented main laterals than from the pads with the optimally-oriented main laterals. The cumulative gas production at the end of the 25 year history is 4.2% higher for an optimally-oriented pad (padl) and 1.1× higher for a poorly-oriented pad (pad3) for a model with 4 laterals/pad than 3 laterals/pad and an optimally-oriented pad is 1.1% higher for an optimally-oriented pad and 1.5× higher for a poorly-oriented pad for a model with 3 laterals/pad than 1 lateral/pad. Although downspacing from 3 to 4 laterals/pad has a greater impact on increasing the cumulative gas production from optimally-oriented pads than downspacing from 1 to 3 laterals/pad, the lower impact on poorly-oriented pads results in a lower total increase the cumulative gas production from the four pads. At the end of the 25-year production history, 9.0% more gas is recovered for the 4 lateral/pad model than the 3 lateral/pad model, which predicts 1.2x more gas than the 1 lateral/pad model. The recovered shale gas exceeds the recovered coal gas after ~7 years of production. The higher contribution of produced coal gas predicted due to downspacing results from a higher contribution of recovered gas from the main coal seam, while the contribution from the minor coal seams is lower. Downspacing has a minimal impact on the cumulative water production; after 25 years of production a difference of 1.0% is predicted between models with 4 and 3 laterals/pad and 1.7% between models with 1 and 3 laterals/pad. While downspacing increases the cumulative water production for the poorly-oriented pads (1.1× for 3 to 4 laterals/pad and 1.3x for 3 to 1 lateral/pad after 25 years), the cumulative water production for the optimally-oriented pads is lower over the majority of the production history (after ~4 years and 3.2% lower after 25 years for 3 to 4 laterals/pad and after ~6 months and 1.1× lower after 25 years for 1 to 3 laterals/pad).
机译:具有各向异性渗透性的早期白垩纪的数值模拟的建模结果,具有各向异性渗透性的洞察力,提供了对发展策略的见解,而不是容易可视化或以其他方式直观。水和天然气生产之间的复杂关系,从多个煤层的多种煤层以及来自有机富有的富子系的贡献以及通过四个井垫的一系列数值模拟研究了井干扰与各向异性骨折渗透率的影响(在平方英尺的土地角落,从1,3,每垫的4个侧面差距下降。在生产25年后,对于裂缝渗透性各向异性的具有最佳导向的侧面的两个垫片产生61%的横向/垫模型的回收气体,3个侧面/垫模型为52%,50% 4个侧向/垫模型。 Downspacing对增加垫子的气体生产具有更大的影响,这些垫的主要侧向与垫子相比,与垫上具有最佳导向的主要侧面。对于使用4个侧向/垫的型号,25年历史结束时,25年历史结束时的累积天然气生产与面向较差的垫(PAD3)为1.1倍,对于具有4个侧面/垫的型号的型号,对于3个侧向/最佳取向垫的焊盘和最佳取向垫的最佳垫为1.1%,对于具有3个侧面/垫的型号的型号的型号的面向较差的垫,比1侧向/垫更高1.5倍。虽然从3到4个侧面/垫的倒置产生了更大的影响,但对从最佳导向的垫的增加而不是从1到3个侧面/垫的倒置,但对较差的垫片的影响较低导致累积较低的总增加来自四个垫的天然气生产。在25年的生产历史结束时,对于4个横向/垫模型,恢复了9.0%的气体比3个横向/垫模型,其预测比1侧/垫模型更多的气体。在7年后,回收的页岩气体超过回收的煤气。产生的煤气的贡献较高,由于销售的淘汰来自主煤层的回收气体的较高贡献,而少量煤层的贡献较低。 Downspacing对累积水生产产生了最小的影响;在25年后,在25年后,在带有4和3个侧面/垫的型号之间预测1.0%的差异,在1和3个侧面/垫之间的型号之间的1.7%。虽然拒绝在25年后增加了较差的垫子(1.1×3到4个侧面/垫和1.3至1侧/垫的1.1×3至1个侧面/垫)的累积水量,但最佳导向垫的累积水量较低在大多数生产历史(25年后〜4岁以后3至4次侧面/垫和〜6个月后的3.2%,25年后较低,1至3个侧面/垫)。

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