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Hydraulic-fracturing-induced strain and microseismic using in situ distributed fiber-optic sensing

机译:Hydraulic-fracturing-induced应变和微弱的震动使用原位分布式光纤传感集成电路

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摘要

Hydraulic fracturing operations in unconventional reservoirs are monitored using distributed fiber-optic sensing through which physical effects such as temperature, strain, and microseismic activity can be measured. When combined with treatment curves and other reservoir information, these measurements give engineers more data to understand the effectiveness of a treatment program and make future reservoir management decisions. Distributed fiber-optic data are acquired within a borehole that is actively being fractured and is subsequently used as an observation well for treatments of a neighboring well. The large-aperture and finely sampled data acquisition provides a variety of measurements at different resolution scales as changes are induced in the reservoir. Distributed acoustic sensing microseismic events are observed with magnitudes above -2. The spatial distribution of events, up to 500 m from the observation well, allows us to estimate diffusivity and fracturing trends for nearby treatment wells. Microseismic events acquired using a standard three-component borehole tool provide insight into the type of events that can be observed only on one system or simultaneously on both systems. We correlate very low frequency (well below 1 Hz) strain-front behavior with the onset of microseismic events, as they are triggered by pore pressure and fracturing progress throughout the reservoir.
机译:水力压裂在非常规操作水库使用分布式监控物理光纤传感效果如温度、应变和微震的活动可以测量。结合曲线和其他治疗储层信息,这些测量工程师更多的数据来理解一个治疗项目,使的有效性未来水库管理决策。分布式光纤数据中获得的积极的钻孔和骨折随后被用作观察井治疗的邻国。大孔径和精细采样数据收购提供了各种测量不同的分辨率尺度变化在水库诱发。传感微震的事件被观察到2级以上。事件,从观察井多达500,让我们估计扩散系数和压裂趋势治疗附近的井。获得使用一个标准的三分量的事件井下工具提供洞察的类型事件,可以只在一个系统或观察同时在两个系统。低频(低于1 Hz) strain-front行为的发生微震事件,因为它们是由孔隙压力整个储层压裂的进展。

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