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Measuring Fracture Network Pressures During Fracturing and Production in Unconventionals in Saudi Arabia

机译:在沙特阿拉伯不传统的压裂和生产过程中测量骨折网络压力

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There is little understanding on how the fracture networks in unconventional source plays, commonly referred as Stimulated Reservoir Volumes (SRV), grow with distance and time during the fracturing jobs and connect other offset laterals with or without hydraulically created SRVs. Understanding of this connectivity with offset wells helps on defining the distance among the laterals to avoid any potential negative impact during fracturing and production. In Jafurah field, several pads have been used to monitor pressures during the fracturing jobs (crosslinked, hybrids and slickwater) and flowbacks. This provides a unique way of measuring the fracturing network pressures at different distances for the initial life of the wells, starting from the generation of the fracture system up to pressures responses due to the production of offset wells. This paper summarizes the layout and technologies used in a series of pads to understand the connectivity among the wells. Bottom-hole and surface pressures were collected during frac and production in the pads. Also, the outer wells on the pads were monitored from offset contiguous pads. Once the pressure data was synchronized in the different events during fracturing, pressures are plotted to determine the level of pressure disturbance with time. Simultaneously, the absolute values are compared with the minimum stresses, re- opening pressures of natural fractures, and the vertical stresses from the area to determine if the fracture network is reaching the monitor wells and stimulating them. Pressures and derivative behavior are also plotted during the production of the offset wells, to see the level of interference during the initial production, and how the intensity changes as function of time. It was observed in all the pads that pressures in the monitor wells during the fracturing jobs have four periods: 1) no pressure disturbance is observed (compressibility effects); 2) pressure slowly increases up to equivalent minimum stress (closure pressure); 3) pressure continues increasing from the minimum horizontal stress up to re-opening pressure of the natural fracture systems; and 4) pressure stays above the natural frac re-opening pressure but below the vertical stresses (overburden). It can be seen that pressures in the monitor wells present a cumulative effect, suggesting a generation of fracture systems all hydraulically communicating. This paper will present the different levels of interference observed in the pads as a function of frac types, distance to the monitor wells, and existence of hydraulic fracture in the monitor area. The methodology can investigate interference in unconventional wells during the fracturing treatments and production. This approach will help in understanding how the fracture networks in unconventionals grow and connect to other offset wells.
机译:几乎没有了解如何在非常规源播放中的裂缝网络,通常称为受激励的储存量(SRV),随着压裂工作期间的距离和时间生长,并在有或没有液压创建的SRV的情况下连接其他偏移侧板。与偏移井的理解有助于定义侧板之间的距离,以避免在压裂和生产过程中产生任何潜在的负面影响。在JAFURAH领域,已用于监测压裂工作(交联,杂种和Slickwater)和流量期间监测压力的几个垫。这提供了一种在井的初始寿命的不同距离下测量压裂网络压力的独特方式,从而从骨折系统的产生时,由于偏移孔的产生而压力响应。本文总结了一系列垫中使用的布局和技术,以了解井中的连接。在FRAC期间收集底部孔和表面压力,并在垫中生产。而且,从偏移连续垫监测焊盘上的外孔。一旦压力压力数据在压裂期间在不同事件中同步,绘制压力就会绘制压力以确定压力干扰水平随时间。同时,将绝对值与最小应力进行比较,自然骨折的重新打开压力,以及来自该区域的垂直应力,以确定裂缝网络是否达到监视器孔并刺激它们。在生产偏移孔期间也绘制了压力和衍生行为,以便在初始生产过程中看到干扰水平,以及强度如何随时间的函数而变化。在压裂作业期间在监测井中压力的所有垫中观察到,有四个时期:1)未观察到压力扰动(可压缩效果); 2)压力缓慢增加到等效的最小应力(闭合压力); 3)压力继续从最小水平压力增加到自然骨折系统的重新打开压力; 4)压力保持高于自然的FRAC重新打开压力,但低于垂直应力(覆盖层)。可以看出,监测孔中的压力呈现累积效果,表明一代裂缝系统均液压沟通。本文将呈现焊盘中观察到的不同水平,作为FRAC类型的函数,到监视器孔的距离以及监测区域中的液压骨折的存在。该方法可以在压裂治疗和生产过程中调查非传统井中的干扰。这种方法将有助于了解骨折网络如何在非传统中生长和连接到其他偏移井。

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