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首页> 外文期刊>Journal of Petroleum Science & Engineering >Study on perforation performance of abrasive water jet enhanced by percussive drilling
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Study on perforation performance of abrasive water jet enhanced by percussive drilling

机译:冲击钻井磨料水射流穿孔性能研究

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摘要

Geothermal energy is abundant and has a high economic development value. Perforation would need to be utilized to establish fluid channels between the borehole and geothermal reservoirs. In the present paper, it is proposed to use percussive drilling to create impact cracks near the borehole to improve abrasive water jet (AWJ) perforation performance. Two groups of the specimen were used for experiments. One was the specimen near the borehole after conventional rotary drilling (G1), the other was the specimen near the borehole after percussive drilling (G2). The optimal parameters of AWJ perforation assisted by percussive drilling were obtained. Through evaluation of AWJ perforation performance, it was found that the perforation depth, diameter and volume of G2 were 1.5 times, 1.3 times and 2 times of the G1, respectively. Besides, there were many internal cracks in G2, which interweave with each other and form a crack network. The results indicated that the impact cracks could change the mechanical properties of the granite near the borehole, then reduce the difficulty of AWJ perforation and improve the perforation performance. All the above merits can provide important technical support for reducing the fracturing pressure, increasing fluid flow and enhancing heat exchange efficiency between geothermal reservoir and borehole.
机译:地热能丰富,经济的发展价值很高。需要采用穿孔来建立钻孔和地热储层之间的流体通道。在本文中,建议使用次勘探钻孔在钻孔附近产生冲击裂缝,以改善磨料水射流(AWJ)穿孔性能。两组样本用于实验。一个是常规旋转钻孔后钻孔附近的标本(G1),另一个是击牙钻井后钻孔附近的样品(G2)。获得了彻底钻探辅助AWJ穿孔的最佳参数。通过评估AWJ穿孔性能,发现P2的穿孔深度,直径和体积分别为1.5倍,1.3倍和2倍的G1。此外,G2中存在许多内部裂缝,其彼此交织并形成裂缝网络。结果表明,冲击裂缝可以改变钻孔附近花岗岩的机械性能,然后减少AWJ穿孔的难度并提高穿孔性能。所有上述优点都可以提供重要的技术支持,用于减少压裂压力,增加流体流动,增强地热储层和钻孔之间的热交换效率。

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