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Demonstration of thermal borehole enlargement to facilitate controlled reservoir engineering for deep geothermal, oil or gas systems

机译:演示热钻孔扩大技术,以促进深层地热,石油或天然气系统的受控油藏工程

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The creation of deep reservoirs for geothermal energy or oil and gas extraction is impeded by insufficient stimulation. Direction and extension of the created fractures are complex to control and, therefore, large stimulated and interconnected fracture networks are difficult to create. This lack of control and efficiency poses an inherent risk of uneconomic reservoirs, due to insufficient heat-sweep surfaces or hydraulic shortcuts. Therefore, we present a technique, which locally increases the cross section of a borehole by applying a thermal spallation process to the sidewalls of the borehole. By controlled and local enlargement of the well bore diameter, initial fracture sources are created, potentially reducing the injection pressure during hydraulic stimulation, initiating fracture growth, optimizing fracture propagation and increasing the number of accessible preexisting fractures. Consequently, local thermal borehole enlargement reduces project failure risks by providing better control on subsequent stimulation processes. In order to demonstrate the applicability of the suggested technique, we conducted a shallow field test in an underground rock laboratory. Two types of borehole enlargements were created in a 14.5 m deep borehole, indicating the feasibility of the technology to improve the productivity of geothermal, oil and gas reservoirs.
机译:刺激不足阻碍了为地热能或石油和天然气开采建立深层储层。所产生的裂缝的方向和延伸很难控制,因此,很难建立大型的受激发和相互连接的裂缝网络。由于没有足够的热扫表面或液压捷径,这种缺乏控制和效率的固有风险是不经济的储层。因此,我们提出了一种技术,该技术通过对井眼的侧壁施加热剥落过程来局部增大井眼的横截面。通过控制井眼直径的局部增大,可以创建初始裂缝源,从而可能在液压增产过程中降低注入压力,引发裂缝增长,优化裂缝扩展并增加可达到的现有裂缝数。因此,局部热井扩大可以通过对后续的增产过程进行更好的控制来降低工程失败的风险。为了证明所建议技术的适用性,我们在地下岩石实验室进行了浅场试验。在14.5 m深的井眼中产生了两种井眼扩大,表明该技术提高地热,油气储集层产能的可行性。

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