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Microseismicity Mechanism Investigation of Stochastic Microcracks Rock Model and Application in Hydraulic Fracturing

机译:随机微裂纹岩体模型的微震机制调查及水力压裂应用

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For the studies on hydraulic fracturing(HF),reservoir formations with natural fractures and their interaction with hydraulic fractures are more concerned.Stochastic Microcracks Rock Model is the microscopic numerical geo-model,which applies the Monte Carlo simulation of stochastic microcracks using Distinct Element Method(DEM).This model compiled in dynamic modeling codes presents more realistic behavior of the rock formations.For characterizing rock mass,the microseismic events are wildly regarded as the indicators of shear slip,and for unconventional reservoir,the induced microseismicity (MS)by HF can be applied in creation more flowing paths to increase very low permeability.Therefore, it is essential to investigate the MS source mechanisms in the rock mass,and with the effect of pre-existing fractures.In this paper,a modified analytical model of microseismicity is derived and verified with numerical simulations coupling Discrete Element Method by Particle Flow Code(PFC3D).The results show that there are the correlation between shearing microseismic event and interaction between hydraulic fractures and natural fractures;and fracture fluid could also contribute to the shear failure during stimulation.This combined numerical modeling provides a unique alternative method for understanding the controlling factors of MS gen-eration and its effect on stimulation.In addition,microseismic events possess the potential to characterize the fracture geometry qualitatively,to evaluate the fluid behavior in fractured formation,to predict fracture propagation,and ultimately to optimize stimulation design.
机译:对于研究液压压裂(HF)的研究,具有自然骨折的储层形成及其与液压骨折的相互作用更为有关。斯切拉斯微裂纹岩体模型是微观数值模型,使用不同的元素法应用随机微裂纹的蒙特卡罗模拟(DEM)。在动态建模码中编制的本文呈现了更现实的岩层的行为。对于岩体的特征,微震事件被野蛮地被视为剪切滑动的指标,并且对于诱导的微震性(MS)诱导的微震性(MS)。 HF可以在创造中应用更多流动的路径以增加非常低的渗透性。因此,必须研究岩体中的MS源机制,并具有预先存在的裂缝的效果。本文,改进的分析模型通过粒子流量代码(PFC3D)耦合离散元件的数值模拟来导出和验证微震性。 TS表明,剪切微震事件与液压骨折和自然骨折之间的相互作用之间存在相关性;并且骨折流体也可能导致刺激期间的剪切失效。本组合的数值模型提供了一种独特的替代方法,以了解MS Gen的控制因子 - 它对刺激的影响。此外,微震事件具有定性地表征骨折几何形状的可能性,以评估裂缝形成中的流体行为,以预测骨折传播,最终优化刺激设计。

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