Fu Yangyang, Zou Jian, Tang Xiaoxu, Zhu Yanhua, Yuan Xiaonan, Du Juan
Tianjin Branch of CNOOC (China) Co. Ltd, Tianjin 300459, China.
National Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, Sichuan 610500, China.
ACS Omega. 2025 Jul 24;10(30):32946-32956. doi: 10.1021/acsomega.5c01705. eCollection 2025 Aug 5.
The development of heterogeneous reservoirs presents a significant challenge to effective acid stimulation, as conventional acid systems tend to preferentially flow through high-permeability channels while bypassing tighter zones. This study addresses the issue by developing a novel temperature-responsive deep-diversion acidizing system (DDA) that enables efficient redirection of acid into low-permeability formations. The system combines organic acid salts, acid-releasing precursors, buffers, and dispersants into a single formulation capable of in situ phase transformation. Under downhole temperatures ranging from 60 °C to 70 °C, the precursor generates hydrogen ions that trigger the formation of insoluble organic acid particles. These particles temporarily plug high-permeability pathways, allowing the acid to penetrate deeper into the formation. Once the diversion is complete, the generated organic acids gradually dissolve on the carbonate scale, thereby restoring flow channels and achieving a self-cleaning effect. Laboratory tests demonstrate that the DDA system maintains low viscosity under surface conditions for injectability and rapidly converts to a solid-phase plugging agent upon heating, with over 90% of the particles actively contributing to diversion. This study proposes a two-stage injection strategydiverter followed by acidto maximize the plugging effect. The system's ability to combine deep placement, temporary plugging, and post-treatment self-dissolution offers a highly effective and operationally feasible solution for enhancing stimulation in heterogeneous water-injection wells.
非均质油藏的开发对有效的酸化增产措施提出了重大挑战,因为传统的酸液体系往往优先流经高渗透通道,而绕过渗透率较低的区域。本研究通过开发一种新型的温度响应型深部转向酸化体系(DDA)来解决这一问题,该体系能够有效地将酸液转向注入低渗透地层。该体系将有机酸盐、酸释放前驱体、缓冲剂和分散剂组合成一种能够原位相变的单一配方。在60℃至70℃的井下温度下,前驱体产生氢离子,触发形成不溶性有机酸颗粒。这些颗粒暂时堵塞高渗透通道,使酸液能够更深地渗入地层。一旦转向完成,生成的有机酸会逐渐溶解碳酸盐垢,从而恢复流动通道并实现自清洁效果。实验室测试表明,DDA体系在地面条件下保持低粘度以便注入,并在加热时迅速转化为固相堵塞剂,超过90%的颗粒积极参与转向。本研究提出了一种两阶段注入策略——先注入转向剂再注入酸液——以最大化堵塞效果。该体系将深部注入、临时堵塞和后处理自溶解相结合的能力,为提高非均质注水油井的增产效果提供了一种高效且操作可行的解决方案。