Propagation Mechanism of Pressure Waves during Pulse Hydraulic Fracturing in Horizontal Wells

Yao Zhang, Jiye Zuo, Xinyu Fei, S. Dong
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Abstract

Hydraulic fracturing, especially pulse hydraulic fracturing, is an important method for extracting oil and gas from low-permeability reservoirs, improving recovery rates significantly. Pulse hydraulic fracturing, which involves varying injection rates to create pressure waves, outperforms traditional constant-flow fracturing methods significantly. However, during pulse hydraulic fracturing operations, the flow properties of the fluid in the column change from moment to moment. Furthermore, current research on pulse hydraulic fracturing primarily focuses on vertical wells, while horizontal wells have become a common operational strategy. Therefore, a transient flow model of fluid within a horizontal well, considering variable-flow injection and unsteady friction conditions, is established in this paper. The model is solved using both the characteristic line method and the finite difference method. The hydrodynamic properties of the fracturing fluid were analyzed, and the propagation mechanisms of pressure waves within horizontal wells under various fluid injection schemes and well depths are analyzed to provide a reference for selecting appropriate fluid injection schemes in engineering practice. The study highlights the impact of fluid viscosity and injection flow amplitude on bottomhole pressure fluctuations, advancing the efficient development of low-permeability oilfields.
水平井脉冲水力压裂过程中压力波的传播机制
水力压裂法,尤其是脉冲水力压裂法,是从低渗透储层中开采石油和天然气的重要方法,可显著提高采收率。脉冲水力压裂法通过改变注入速度来产生压力波,大大优于传统的恒定流量压裂法。然而,在脉冲水力压裂作业过程中,液柱中流体的流动特性每时每刻都在发生变化。此外,目前对脉冲水力压裂的研究主要集中在垂直井上,而水平井已成为一种常见的作业策略。因此,本文建立了水平井内流体的瞬态流动模型,考虑了变流注入和非稳态摩擦条件。模型采用特征线法和有限差分法求解。分析了压裂液的流体力学特性,并分析了不同注液方案和井深条件下压力波在水平井内的传播机理,为工程实践中选择合适的注液方案提供参考。研究强调了流体粘度和注入流量振幅对井底压力波动的影响,推动了低渗透油田的高效开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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