Highl'/> Complex analytical solutions for flow in hydraulically fractured hydrocarbon reservoirs with and without natural fractures
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Complex analytical solutions for flow in hydraulically fractured hydrocarbon reservoirs with and without natural fractures

机译:具有和不具有天然裂缝的水力压裂碳氢化合物储层流动的复杂分析解决方案

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HighlightsStreamlines in naturally fractured reservoir modeled by new analytical formulation.Natural fractures may affect time-of-flight contours and drainage contours.Flow is supported in natural fracture direction and limited normal to the fractures.Prototype slab as natural analog for flow in hydraulically fractured reservoirs.AbstractReservoir drainage towards producer wells in a hydraulically and naturally fractured reservoir is visualized by using an analytical streamline simulator that plots streamlines, time-of-flight contours and drainage contours based on complex potentials. A new analytical expression is derived to model the flow through natural fractures with enhanced hydraulic conductivity. Synthetic examples show that in an otherwise homogeneous reservoir even a small number of natural fractures may severely affect streamline patterns and distort the drainage contours. Multiple parallel natural fractures result in a drainage region that is narrower in the direction normal to the natural fractures while the drainage reach is larger in the natural fracture direction. Reservoirs with numerous natural fractures are shown to be characterized by more tortuous drainage patterns than reservoirs without natural fractures. Finally, the analytical flow model for naturally fractured reservoirs is applied to a natural analog of flow into hydraulic fractures. The tendency of the injected fluid to stay confined to the fracture network as opposed to matrix flow is entirely controlled by the hydraulic conductivity contrast between the fracture network and the matrix.
机译: 突出显示 通过新的解析公式建模的天然裂缝储层流线。 天然裂缝可能会影响飞行时间等高线和排水等高线。 支持流 < ce:para id =“ para0004” vi ew =“ all”>原型板作为水力压裂储层中流量的自然模拟。 摘要 通过使用分析流线模拟器绘制流线,时间,可以直观地看到水力和天然裂缝性储层向生产井的储层排水情况基于复杂电势的飞行轮廓和排水轮廓。导出了新的分析表达式,以模拟具有增强的水力传导性的天然裂缝的流动。综合实例表明,在原本为均质的油藏中,即使是少量的天然裂缝也可能严重影响流线型式并扭曲排水轮廓。多个平行的自然裂缝导致排水区域在垂直于自然裂缝的方向上变窄,而排水范围在自然裂缝方向上变大。与无天然裂缝的储层相比,具有众多天然裂缝的储层的排泄方式更为曲折。最后,将自然裂缝储层的解析流动模型应用于水力裂缝的自然流模拟。与基质流相反,注入的流体保持在裂缝网中的趋势完全由裂缝网与基质之间的水力传导率差异控制。

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