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Adaptive Finite Element-Discrete Element Analysis for Microseismic Modelling of Hydraulic Fracture Propagation of Perforation in Horizontal Well considering Pre-Existing Fractures

机译:考虑已有裂缝的水平井射孔水力裂缝扩展微地震建模的自适应有限元-离散元分析

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Hydrofracturing technology of perforated horizontal well has been widely used to stimulate the tight hydrocarbon reservoirs for gas production. To predict the hydraulic fracture propagation, the microseismicity can be used to infer hydraulic fractures state; by the effective numerical methods, microseismic events can be addressed from changes of the computed stresses. In numerical models, due to the challenges in accurately representing the complex structure of naturally fractured reservoir, the interaction between hydraulic and pre-existing fractures has not yet been considered and handled satisfactorily. To overcome these challenges, the adaptive finite element-discrete element method is used to refine mesh, effectively identify the fractures propagation, and investigate microseismic modelling. Numerical models are composed of hydraulic fractures, pre-existing fractures, and microscale pores, and the seepage analysis based on the Darcy’s law is used to determine fluid flow; then moment tensors in microseismicity are computed based on the computed stresses. Unfractured and naturally fractured models are compared to assess the influences of pre-existing fractures on hydrofracturing. The damaged and contact slip events were detected by the magnitudes, -values, Hudson source type plots, and focal spheres.
机译:射孔水平井的水力压裂技术已被广泛用于增产致密油气藏。为了预测水力压裂的扩展,可以使用微地震来推断水力压裂的状态。通过有效的数值方法,可以通过计算应力的变化来解决微地震事件。在数值模型中,由于要准确地表示天然裂缝储层的复杂结构存在挑战,因此尚未充分考虑和处理水力裂缝与既有裂缝之间的相互作用。为了克服这些挑战,采用了自适应有限元-离散元方法来细化网格,有效地识别裂缝的传播,并研究微地震建模。数值模型由水力压裂,预先存在的压裂和微尺度的孔隙组成,并使用基于达西定律的渗流分析确定流体流动。然后根据计算出的应力计算微震中的矩张量。比较未破裂模型和自然破裂模型,以评估先前存在的裂缝对水力压裂的影响。通过大小,-值,哈德森震源类型图和震源球检测出损坏和接触滑移事件。

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