粗裂缝条件下暂堵参数优化

Lishan Yuan, Fu-jian Zhou, Ben Li, Junjie Gao, Caizhong Wang, Yanxin Tan, Jianbo Huang
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引用次数: 3

摘要

临时堵转(TPD)压裂技术在非常规油藏开发中得到了广泛应用。暂堵的操作程序、暂堵剂的尺寸和组合是现场工程师非常关心的问题。本研究比较了不同分流剂的泵送方式,优化了不同裂缝宽度下分流剂的组合和泵送速率。实验方法是基于3D打印技术制造的模拟断裂装置。通过对断口进行三维扫描获得断口的表面形貌。实验过程是将载液和暂堵剂的混合物泵入裂缝,同时记录泵入压力和载液的出口体积。通过记录的参数对裂缝封堵效果进行了评价。在较宽的裂缝宽度范围内(1 ~ 4 mm),对暂堵剂的浓度和成分进行了优化。降低导流剂浓度有助于降低导流作业风险。在低浓度暂堵剂条件下,由于裂缝的弯曲度和粗糙度,大颗粒暂堵剂在裂缝中起到桥接作用;然后,较小的颗粒和纤维暂堵剂填充大颗粒的空隙,形成强而低渗透的暂堵剂填料。结果表明,混合泵入颗粒和纤维暂堵剂比分别泵入和依次泵入更有利于封堵裂缝。高颗粒浓度具有双面效应,导致最佳纤维颗粒比的存在。导流剂的浓度随导流剂粒径的增大而减小。在裂缝宽度不变的情况下,更高的泵送速率可以帮助更有效地暂时堵上裂缝。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Temporary Plugging Parameters Under Rough Fractures
Temporary-plugging-and-diverting (TPD) fracturing technology is widely used in the development of the unconventional reservoir. The operational procedure of temporary plugging and the size and combination of diverters are very much concerned by field engineers. This study compares different pumping procedure of diverters and optimizes the combination and pumping rate of diverters under the different width of the fracture. The experimental method is based on a simulated fracture apparatus, which is manufactured by the 3D printing technology. The surface morphology of the fracture is obtained through a 3D scanning of a fracture. The experimental procedure is pumping the carrier liquid and diverter mixtures into the fracture while recording pumping pressure and the outlet volume of carrier fluid. The fracture plugging efficiency was evaluated through the recorded parameters. The diverter concentration and composition were optimized at a wide range of fracture width (1 mm to 4 mm). Low the diverter concentration could help to reduce the operational risk of the diversion. Under the low concentration of the diverters, the plugging mechanism is that the large particle diverters bridge in the fracture due to the fracture tortuosity and roughness; the smaller particle and fiber diverters then fill the voids of the large particles and form a strong and low permeable diverter pack. The results indicate that pumping the mixture particle and fiber diverters are more beneficial to plug the fracture than pumping them separately and sequentially. High particle concentration has a two-sided effect, which leads to the existence of an optimal fiber-to-particle ratio. The concentration of diverters could decrease when the size of diverters is increased. At a constant fracture width, higher pumping rates can help to temporarily plug the fracture more efficiently.
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