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Characteristics of fluid-induced resonances observed during microseismic monitoring

机译:在微地震监测中观察到的流体诱发的共振特征

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Three groups of resonances are observed during a two-stage hydraulic experiment recorded by 12 three-component geophones. The injected fluid is composed of a slurry of mostly water and proppant plus some supercritical nitrogen. Resonance characteristics are estimated using an autoregressive model. Three resonance models are investigated: fluid-filled cracks, nonlaminar fluid flow, and repetitive events in terms of anticipated resonance frequencies, quality factors, and amplitudes. The observed resonances are very stable and positively correlated with either the slurry flow or the nitrogen injection rate, which is in contradiction with the repetitive events and fluid-filled crack models, respectively. Resonances obtained by numerical simulations of an unstable jet agree with the main characteristics of most observed resonances. Our observations suggest that variations in resonance frequencies are mainly driven by variations in fluid flow, whereas quality factors are more sensitive to the fluid composition through variations in nitrogen injection rate. This study also suggests that resonance frequencies and quality factors can provide complementary information for real-time monitoring of fluid injection into reservoirs, for hydraulic stimulations, geothermal operations, carbon capture, and storage or fluid movement during volcano eruptions.
机译:在由12个三分量地震检波器记录的两阶段水力实验期间,观察到三组共振。注入的流体主要由水和支撑剂的浆液以及一些超临界氮组成。共振特性是使用自回归模型估算的。根据预期的共振频率,品质因数和振幅,研究了三种共振模型:充满流体的裂纹,非层状流体流动和重复事件。观测到的共振非常稳定,并且与泥浆流量或注氮速率呈正相关,这分别与重复事件和充满流体的裂缝模型相矛盾。通过不稳定喷气机的数值模拟获得的共振与大多数观察到的共振的主要特征一致。我们的观察结果表明,共振频率的变化主要由流体流量的变化驱动,而品质因数因氮气注入速率的变化而对流体成分更敏感。这项研究还表明,共振频率和品质因数可以为实时监测注入储层的流体,水力刺激,地热作业,碳捕获以及火山喷发过程中的流体流动提供补充信息。

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