Liao Haiying, Yu Hongmin, Xu Guanli, Liu Ping, He Yingfu, Zhou Yinbang
SINOEPC Exploration & Production Research Institute, Research and Development Center for the Sustainable Development of Continental Sandstone Mature, Oilfield by National Energy Administration, Beijing 100083, China.
ACS Omega. 2022 Jan 28;7(5):4595-4605. doi: 10.1021/acsomega.1c06582. eCollection 2022 Feb 8.
Chemical flooding technology has been widely applied in medium- and high-permeability reservoirs. However, it is rarely applied in low-permeability reservoirs, which is mainly limited by reservoir physical properties, chemical agents, injection capacity, and so forth. In this paper, a novel chemical formula used in low-permeability reservoirs was developed. In response to the low-permeability reservoir geological characteristics, fluid properties, and water flooding development of the target block, some experimental studies and field project studies of polymer-surfactant flooding were carried out. The surfactant structure and polymer molecular weight were determined from laboratory experiments. The polymer-surfactant binary system was synthesized. It had good injectivity in low-permeability reservoirs, and its oil recovery efficiency increased over 10% in the laboratory experiment. The result was higher than that of single chemical flooding. After field implementation, initial results have been achieved with an increase in injection pressure. The chemical formula can effectively alleviate intra-layer and inter-layer contradictions in the reservoir. The project has increased oil output by 77,700 t and the recovery factor by 3.5%. The experience and lessons were of great significance for the development of chemical flooding in high-temperature, high-salinity, and low-permeability reservoirs.
化学驱油技术已在中高渗透油藏中得到广泛应用。然而,其在低渗透油藏中的应用却很少,这主要受到油藏物性、化学剂、注入能力等因素的限制。本文研发了一种用于低渗透油藏的新型化学配方。针对目标区块低渗透油藏的地质特征、流体性质及水驱开发情况,开展了一些聚合物 - 表面活性剂驱油的实验研究和现场工程研究。通过室内实验确定了表面活性剂结构和聚合物分子量,合成了聚合物 - 表面活性剂二元体系。该体系在低渗透油藏中具有良好的注入性,在室内实验中其原油采收率提高了10%以上,效果高于单一化学驱油。现场实施后,已取得初步成效,注入压力有所上升。该化学配方能有效缓解油藏层内和层间矛盾。该项目已累计增油7.77万吨,采收率提高了3.5个百分点。这些经验教训对高温、高盐、低渗透油藏化学驱油开发具有重要意义。