Zhao Guang, Dai Caili, Zhao Mingwei
State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao, Shandong, P. R. China.
PLoS One. 2014 Jun 20;9(6):e100471. doi: 10.1371/journal.pone.0100471. eCollection 2014.
Dispersed particle gel (DPG) particles of nano- to micron- to mm-size have been prepared successfully and will be used for profile control treatment in mature oilfields. The profile control and enhanced oil recovery mechanisms of DPG particles have been investigated using core flow tests and visual simulation experiments. Core flow test results show that DPG particles can easily be injected into deep formations and can effectively plug the high permeability zones. The high profile improvement rate improves reservoir heterogeneity and diverts fluid into the low permeability zone. Both water and oil permeability were reduced when DPG particles were injected, but the disproportionate permeability reduction effect was significant. Water permeability decreases more than the oil permeability to ensure that oil flows in its own pathways and can easily be driven out. Visual simulation experiments demonstrate that DPG particles can pass directly or by deformation through porous media and enter deep formations. By retention, adsorption, trapping and bridging, DPG particles can effectively reduce the permeability of porous media in high permeability zones and divert fluid into a low permeability zone, thus improving formation profiles and enhancing oil recovery.
已成功制备出纳米至微米至毫米尺寸的分散颗粒凝胶(DPG)颗粒,并将用于成熟油田的调剖处理。利用岩心流动试验和可视化模拟实验研究了DPG颗粒的调剖和提高采收率机理。岩心流动试验结果表明,DPG颗粒能够轻松注入深层地层,并能有效封堵高渗透带。较高的调剖率改善了储层非均质性,使流体转向低渗透带。注入DPG颗粒后,水渗透率和油渗透率均降低,但渗透率降低的不均衡效应显著。水渗透率的降低幅度大于油渗透率,以确保油在其自身通道中流动并易于被驱出。可视化模拟实验表明,DPG颗粒可以直接通过或通过变形穿过多孔介质并进入深层地层。通过滞留、吸附、捕集和桥接,DPG颗粒能够有效降低高渗透带多孔介质的渗透率,使流体转向低渗透带,从而改善地层剖面并提高采收率。