井漏
机制(生物学)
循环(流体动力学)
石油工程
地质学
材料科学
冶金
工程类
钻井液
航空航天工程
钻探
哲学
认识论
作者
Chengyuan Xu,Jingquan Zhong,Shuizhong Luo,Mingming Zhu,Lei Liu,Yingrui Bai,Yili Kang,Xinyue Tang,Zhenjiang You
出处
期刊:Spe Journal
[Society of Petroleum Engineers]
日期:2025-08-25
卷期号:30 (10): 6097-6111
被引量:1
摘要
Summary Lost circulation is a significant challenge during drilling operations. To mitigate this issue in fractured formations, the most commonly used methods are bridging and plugging, which help seal off fractures and prevent the loss of drilling fluids. However, the sealing layer formed by bridging materials is inherently discontinuous, relying on physical forces such as elastic force, friction, and interlocking to maintain its stability. This limits the further enhancement of pressure-bearing performance. Consequently, in deep and ultradeep formations with harsh environments, challenges persist regarding insufficient pressure-bearing capacity for fracture sealing and poor unplugging efficiency. Therefore, enhancing interparticle forces through the introduction of chemical adhesion has become a key strategy to improve the pressure-bearing capacity and overall stability of the sealing layer. To address this technical challenge, we developed a novel core-shell structured plugging agent TPA-1 with high-temperature-activated bonding characteristics. The thermal activation time of TPA-1 at 110~140°C ranges from 2.75 hours to 6.25 hours, ensuring safety during on-site plugging operations. When combined with bridging plugging materials, TPA-1 effectively sealed a 3-mm fracture, achieving a maximum pressure-bearing capacity of 15.4 MPa. Furthermore, when mixed with self-degradable materials for temporary plugging of reservoir fractures, the post-unplugging fracture permeability reached 9785.8 md. The temperature-sensitive adhesive plugging agent TPA-1, as proposed in this study, remains functionally identical to conventional bridging plugging materials at ambient temperature, aiming to provide a simple and highly safe functional adhesive plugging material for field applications.
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