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Microseismic joint location and anisotropic velocity inversion for hydraulic fracturing in a tight Bakken reservoir

机译:Bakken水库水力压裂微震联合定位与各向异性速度反演

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摘要

To improve the accuracy of microseismic event locations, we developed a new inversion method with double-difference constraints for determining the hypocenters and the anisotropic velocity model for unconventional reservoirs. We applied this method to a microseismic data set monitoring a Middle Bakken completion in the Beaver Lodge area of North Dakota. Geophone arrays in four observation wells improved the ray coverage for the velocity inversion. Using an accurate anisotropic velocity model is important to correctly assess the height growth of the hydraulically induced fractures in the Middle Bakken. Our results showed that (1) moderate-to-strong anisotropy exists in all studied sedimentary layers, especially in the Upper and Lower Bakken shale formations, where the Thomsen parameters (ϵ and γ) can be greater than 0.4, (2) all the events selected for high signal-to-noise ratio and used for the joint velocity inversion are located in the Bakken and overlying Lodgepole formations, i.e., no events are detected in the Three Forks formation below the Bakken, and (3) more than half of the strong events are in two clusters at approximately 100 and 150 m above the Middle Bakken. Reoccurrence of strong, closely clustered events suggested activation of natural fractures or faults in the Lodgepole formation. The sensitivity analysis for the inversion results showed that the relative uncertainty in parameter δ is larger than other anisotropy parameters. The microseismic event locations and the anisotropic velocity model are validated by comparing synthetic and observed seismic waveforms and by S-wave splitting.
机译:为了提高微震事件定位的准确性,我们开发了一种新的具有双差约束的反演方法,用于确定非常规油藏的震源和各向异性速度模型。我们将此方法应用于微地震数据集,该数据集监视北达科他州Beaver Lodge地区的中巴肯完井。四个观测井中的检波器阵列提高了速度反演的射线覆盖率。使用正确的各向异性速度模型对于正确评估巴肯中部水力裂缝的高度增长很重要。我们的结果表明(1)在所有研究的沉积层中都存在中等到强的各向异性,特别是在Bakken的上部和下部页岩层中,Thomsen参数(和γ)可以大于0.4,(2)所有选择用于高信噪比并用于联合速度反演的事件位于巴肯及其上覆的Lodgepole地层中,即在巴肯以下的三叉地层中未检测到任何事件,并且(3)强烈事件发生在中巴肯地区上方约100和150 m的两个集群中。再次发生强的,紧密聚集的事件,表明在Lodgepole地层中自然断裂或断层被激活。反演结果的敏感性分析表明,参数δ的相对不确定性大于其他各向异性参数。通过比较合成和观察到的地震波形并通过S波分裂,验证了微地震事件的位置和各向异性速度模型。

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