An evaluation of fiber-based lost circulation material for fracture plugging using simulations

被引:11
作者
Henriques, Cassian [1 ]
Taleghani, Arash Dahi [1 ]
机构
[1] Penn State Univ, Dept Energy & Mineral Engn, University Pk, PA 16802 USA
来源
GEOENERGY SCIENCE AND ENGINEERING | 2023年 / 229卷
关键词
Lost circulation materials; Fibers; Discrete element method (DEM); Fracture sealing; Fiber; -bridging; HORIZONTAL WELLS; FLUID-FLOW; MODEL;
D O I
10.1016/j.geoen.2023.212144
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Lost circulation during drilling operations is a major problem owing to the prolonged non-productive time, especially in naturally fractured reservoirs. Incorporating granular lost circulation materials (LCM) in the drilling mud has been the traditional first-approach method with the industry moving towards incorporating fibers and flaky LCMs with the goal of improving the fracture sealing effectiveness of the LCM blends. Although the fracture sealing mechanism and the particle transport for granular LCMs are well understood, there is limited knowledge on the behavior of fibers as LCMs in flows governed by high differential pressures at the bottomhole. Further, considering limited lab studies to understand the effectiveness of fiber LCMs, we tried to fill this gap by developing and using coupled numerical models that are now able to incorporate the axial and bending deformations of fibers to assess the impact of different design parameters. We evaluate the effects of fluid rheology, the LCM concentration, fiber stiffness, interparticle friction, and fracture roughness on fracture sealing. The mechanism driving fracture sealing in fiber-based LCM is vastly different from the proposed mechanisms for granular LCM. Bridge initiation in fiber-LCM originates with 'initial fiber jamming' leading to consecutive fibers further being trapped forming a net-like entrapment that further impedes and retains incoming particles. The ability of this initial bridge initiation to develop into a complete seal is dependent on several factors. The presented model provides an initial assessment tool for evaluating the significance of different LCM parameters for effective fracture sealing. We attempt to showcase the importance and reliability of bringing coupled simulation techniques into the domain for effective fiber LCM evaluation with the results of our work.
引用
收藏
页数:12
相关论文
共 36 条
[31]   Shape Memory Polymers as Lost Circulation Materials for Sealing Wide-Opened Natural Fractures [J].
Tabatabaei, Maryam ;
Taleghani, Arash Dahi ;
Li, Guoqiang ;
Zhang, Tianyi .
SPE DRILLING & COMPLETION, 2021, 36 (04) :931-942
[32]   Combination of shape-memory capability and self-assembly to plug wide remote fractures [J].
Tabatabaei, Maryam ;
Taleghani, Arash Dahi ;
Li, Guoqiang ;
Zhang, Tianyi .
MRS COMMUNICATIONS, 2021, 11 (06) :770-776
[33]   LAGRANGIAN NUMERICAL-SIMULATION OF PLUG FLOW OF COHESIONLESS PARTICLES IN A HORIZONTAL PIPE [J].
TSUJI, Y ;
TANAKA, T ;
ISHIDA, T .
POWDER TECHNOLOGY, 1992, 71 (03) :239-250
[34]   Physical plugging of lost circulation fractures at microscopic level [J].
Xu, Chengyuan ;
Zhang, Honglin ;
Kang, Yili ;
Zhang, Jingyi ;
Bai, Yingrui ;
Zhang, Juan ;
You, Zhenjiang .
FUEL, 2022, 317
[35]   Structural failure mechanism and strengthening method of fracture plugging zone for lost circulation control in deep naturally fractured reservoirs [J].
Xu Chengyuan ;
Yan Xiaopeng ;
Kang Yili ;
You Lijun ;
Zhang Jingyi .
PETROLEUM EXPLORATION AND DEVELOPMENT, 2020, 47 (02) :430-440
[36]   Discrete particle simulation of particle-fluid flow: model formulations and their applicability [J].
Zhou, Z. Y. ;
Kuang, S. B. ;
Chu, K. W. ;
Yu, A. B. .
JOURNAL OF FLUID MECHANICS, 2010, 661 :482-510