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Acid Placement in Acid Jetting Treatments in Long Horizontal Wells

机译:在长水平井中的酸喷射处理中的酸置

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In the Middle East, extended reach horizontal wells (on the order of 25,000 feet of horizontal displacement) are commonly acid stimulated by jetting acid out of drill pipe. The acid is jetted onto the face of the openhole wellbore as the drill pipe is withdrawn from the well. The jetting action helps to remove the drilling fluid filter cake and promote the acid to penetrate into the formation and form wormholes to stimulate the well. However, with very long sections of wellbore open to flow, the acid placement and subsequent wormhole distribution and penetration depths are uncertain. We have modeled this process using a comprehensive model of acid placement and wormhole propagation in a horizontal well. We presume that the acid jetting tool removes the drilling mud filter cake, so that no filter cake exists between the end of the drill pipe and the toe of the well. Correspondingly, we assume that there is an intact, low-permeability filter cake on the borehole wall between the end of the drill pipe and the heel of the well. The drill pipe is modeled as being withdrawn from the well during the acid jetting treatment, as is done in practice. The acidizing simulator predicts the distribution of acid and the depths of wormholes formed as functions of time and position during the acid jetting treatment. The model shows that the acid jetting process as typically applied in these wells preferentially stimulates the toe region of the horizontal well. Comparisons of the simulation predictions with published data for acid jetting treatments in such wells showed good general agreement. Based on the simulation study, we present recommendations for improved acid jetting treatment procedures to improve the distribution of acid injected into the formation.
机译:在中东,延长距离水平井(大约25,000英尺的水平位移)是通过喷射酸管刺激的普遍酸。当钻管从井中抽出时,酸被喷射到露出井眼的面上。喷射动作有助于去除钻井液滤饼并促进酸渗透到地层中,形成蠕虫孔以刺激井。然而,由于井筒的非常长的骨头开放,酸置和随后的虫洞分布和渗透深度是不确定的。我们使用水平井中的酸置型和虫洞繁殖的综合模型建模了这一过程。我们认为酸喷射工具去除钻井泥浆滤饼,因此在钻杆的末端和井的脚趾之间不存在滤饼。相应地,我们假设在钻杆的末端和井的后跟之间的钻孔壁上存在完整的低渗透滤饼。如在实践中所做的那样,钻管被建模为从酸喷射处理期间从井中取出。酸化模拟器预测酸的分布和虫洞中形成的虫洞的深度和酸喷射处理期间的位置。该模型表明,通常施加在这些孔中的酸喷射过程优先刺激水平阱的脚趾区域。在这种井中的酸喷射治疗中具有公布数据的模拟预测的比较显示出良好的普遍协议。基于模拟研究,我们提出了改进的酸喷射处理程序的建议,以改善注入地层的酸的分布。

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