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Fracture Productivity Prediction Considering Natural Fracture Formation Proximal to Fault Damage Zone

机译:考虑近端故障损伤区的自然骨折形成的断裂生产率预测

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Increases in production from unconventional reservoirs can be attributed, in some instances, to the effect of well spacing and induced fracture placement. A firm understanding of the abundance and orientation of natural fractures is often limited, yet it is important to the characterization of unexpected levels of recovery. The uncertainty in the characterization of natural fracture density and orientation is typically high; consequently, value exists in understanding the mechanics and distribution of natural fractures, given plausible subsurface structural control mechanisms. Post-faulting stress rotation is considered here to be the mechanism that enables non-parallel orientation of natural fractures coincident to the fault damage zone. Disparate fracture orientations occur in the fault process zone exclusively as a function of energy release rate. A fault likelihood attribute is used to spatially characterize natural fractures, considering the existence of a correlation between faulting and the formation of natural fractures. Subsurface consistency between the flow simulation model and the seismic attributes is then achieved by way of a petro-elastic model embedded in the reservoir simulator. After computing time-dependent elastic properties, their dimensionless representation is used to characterize matrix fracture interaction. Primary fracture plane parallelism with respect to the fault damage zone is anticipated when the existing stress field simultaneously dictates the formation of faults and fractures. Fracture plane orthogonality or any off-axis orientation relative to the primary axis of faulting represents fracture propagation away from the strongly non-proportional plastic loading zone post-stress field re-orientation. This fracture plane re-orientation is potentially considered as a function of the stress field orientation after the development of faults; therefore, it can demonstrate variability in its azimuthal orientation. An observed correlation between the pressure profile and the computed dimensionless elastic property suggests the potential for pre- and post-production seismic surveys to better facilitate overall asset management and predictive capabilities.
机译:在一些情况下,来自非传统水库的生产增加可以归因于井间距和诱导的骨折放置的影响。坚定地了解自然骨折的丰富和定向往往是有限的,但它对表征意外的恢复程度是重要的。自然断裂密度和取向表征的不确定性通常很高;因此,鉴于合理的地下结构控制机制,理解自然骨折的力学和分布的价值。在此考虑断层应力旋转是使得能够使自然骨折的非平行取向与故障损伤区域一致的机制。由于能量释放速率的函数,在故障过程区域中发生不同的断裂方向。错误似然属性用于在空间上表征自然骨折,考虑到存在断层与自然骨折的形成之间的相关性。然后通过储存器模拟器嵌入的石油弹性模型实现流动模拟模型和地震属性之间的地下一致性。在计算时间依赖性弹性特性之后,它们的无量纲表示用于表征矩阵断裂相互作用。当现有的应力场同时决定故障和裂缝的形成时,预期关于故障损伤区域的初级断裂平面并行度。相对于主断层轴线的断裂面正交或任何偏离轴取向代表远离应力场重新定向的强不比例塑料负载区的断裂传播。这种断裂平面重新定向可能被认为是断层后应力场取向的函数;因此,它可以证明其方位角方向的可变性。在压力曲线和计算的无量纲弹力属性之间观察到的相关性表明,生产前和后期地震勘测的可能性,以更好地促进整体资产管理和预测能力。

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