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首页> 外文期刊>Journal of natural gas science and engineering >Field data provide estimates of effective permeability, fracture spacing, well drainage area and incremental production in gas shales
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Field data provide estimates of effective permeability, fracture spacing, well drainage area and incremental production in gas shales

机译:现场数据提供有效渗透性,裂缝间距,井排水区和燃气节的增量生产估算

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About half of US natural gas comes from gas shales. It is valuable to study field production well by well. In early 2018, there were some 67,000 active horizontal gas shale wells in the US, some more than 12 years on production. Our approach is a hybrid between an unstructured big-data approach and physics-based models. We extend a previous two-parameter scaling theory of shale gas production by adding a third parameter that incorporates gas inflow from the external unstimulated reservoir. This allows us to estimate for the first time the effective permeability of the unstimulated shale and the spacing of fractures in the stimulated region. From an analysis of wells in the Barnett shale, we find that on average stimulation fractures are spaced every 20 m, and the effective permeability of the unstimulated region is 100 nanodarcy. We estimate that over 30 years on production the Barnett wells will produce on average about 20% more gas because of inflow from the outside of the stimulated volume. There is a clear tradeoff between production rate and ultimate recovery in shale gas development. In particular, our work has strong implications for well spacing in infill drilling programs.
机译:大约一半的美国天然气来自天然气。通过井学习野外生产是有价值的。 2018年初,美国有约67,000个活跃的水平气体页岩井,超过12年的生产。我们的方法是非结构化大数据方法和基于物理模型之间的混合。通过添加来自外部未刺激的储层的第三个参数,通过添加第三个参数来扩展页岩气产量的先前两参数缩放理论。这使我们能够估计第一次是未刺激的页岩的有效渗透性和刺激区域中骨折的间距。从Barnett Shale的井中分析,我们发现,在平均刺激骨折上每20米间隔开,并且未刺激区域的有效渗透率为100纳秒。我们估计,由于刺激体积的外部流入,Barnett Wells的生产率将平均产生约20%的气体。页岩气发展的生产率与最终恢复之间存在明显的权衡。特别是,我们的工作对填充钻井计划的井间距具有很强的影响。

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