首页> 外文期刊>Journal of Petroleum Science & Engineering >Directional distance prediction model of slotting-directional hydraulic fracturing (SDHF) for coalbed methane (CBM) extraction
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Directional distance prediction model of slotting-directional hydraulic fracturing (SDHF) for coalbed methane (CBM) extraction

机译:煤层气(CBM)提取时隙定向液压压裂(SDHF)的定向距离预测模型

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摘要

Slotting-directional hydraulic fracturing (SDHF) is a promising technology for extracting CBM, because it can achieve directional propagation of fractures, and solve the problem of non-uniform permeability enhancement in hydraulic fracturing. In order to provide construction basis for SDHF, directional distance prediction model of SDHF was established in this work, and obtained an analytical solution for the directional distance. Similar simulation experiments using true triaxial test system in laboratory were conducted, high-energy CT scanning documented fracture morphology, the fracture directional distance was measured, and the reliability of the model was proved. The research results indicated that as the azimuth of slotted hole and the horizontal stress difference decreased, directional distance increased exponentially. With the increase of injection pressure and size of slotted hole, the directional distance increased linearly and quadratically, respectively. The established prediction model and findings reported in the paper will provide guidance for engineering applications.
机译:调煤机液压压裂(SDHF)是提取CBM的有希望的技术,因为它可以实现裂缝的定向传播,并解决液压压裂中的不均匀渗透性的问题。为了为SDHF提供施工基础,在这项工作中建立了SDHF的定向距离预测模型,并获得了定向距离的分析解决方案。在实验室中使用真正的三轴测试系统的类似模拟实验,高能量CT扫描记录裂缝形态,测量了裂缝方向距离,并证明了模型的可靠性。研究结果表明,作为开槽孔的方位角和水平应力差减小,方向距离呈指数增加。随着喷射孔的注射压力和尺寸的增加,定向距离分别线性和二次增加。本文报告的已既定的预测模型和调查结果将为工程应用提供指导。

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