Yu Pengliang, Mali Ankur, Velaga Thejasvi, Bi Alex, Yu Jiayi, Marone Chris, Shokouhi Parisa, Elsworth Derek
EMS Energy Institute, G3 Center and Department of Geosciences, Pennsylvania State University, University Park, USA.
EMS Energy Insititute, G3 Center and Department of Energy and Mineral Engineering, Pennsylvania State University, University Park, USA.
Nat Commun. 2024 Mar 6;15(1):2057. doi: 10.1038/s41467-024-46238-3.
We link changes in crustal permeability to informative features of microearthquakes (MEQs) using two field hydraulic stimulation experiments where both MEQs and permeability evolution are recorded simultaneously. The Bidirectional Long Short-Term Memory (Bi-LSTM) model effectively predicts permeability evolution and ultimate permeability increase. Our findings confirm the form of key features linking the MEQs to permeability, offering mechanistically consistent interpretations of this association. Transfer learning correctly predicts permeability evolution of one experiment from a model trained on an alternate dataset and locale, which further reinforces the innate interdependency of permeability-to-seismicity. Models representing permeability evolution on reactivated fractures in both shear and tension suggest scaling relationships in which changes in permeability ( ) are linearly related to the seismic moment ( ) of individual MEQs as . This scaling relation rationalizes our observation of the permeability-to-seismicity linkage, contributes to its predictive robustness and accentuates its potential in characterizing crustal permeability evolution using MEQs.
我们利用两个现场水力激发实验,将地壳渗透率的变化与微地震(MEQ)的信息特征联系起来,在这两个实验中同时记录了微地震和渗透率的演化。双向长短期记忆(Bi-LSTM)模型有效地预测了渗透率的演化和最终渗透率的增加。我们的研究结果证实了将微地震与渗透率联系起来的关键特征的形式,为这种关联提供了机制上一致的解释。迁移学习能够根据在另一个数据集和地点训练的模型正确预测一个实验的渗透率演化,这进一步强化了渗透率与地震活动之间的内在相互依存关系。表示剪切和拉伸中重新激活裂缝上渗透率演化的模型表明存在比例关系,即渗透率变化( )与单个微地震的地震矩( )呈线性关系,如 所示。这种比例关系使我们对渗透率与地震活动联系的观察合理化,有助于其预测的稳健性,并突出了其在利用微地震表征地壳渗透率演化方面的潜力。