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作 者:姚惠利[1]
机构地区:[1]中国石化胜利油田分公司地质科学研究院,山东东营257015
出 处:《油田化学》2008年第3期261-264,287,共5页Oilfield Chemistry
基 金:"十五"国家科技攻关计划"调剖堵水综合配套技术"(项目编号2002BA312B)
摘 要:所报道的强化调驱技术是水驱油藏在充分、深部调剖之后注入少量高效驱油剂的提高采收率技术。本文报道高效驱油剂的筛选及用量优化。含复碱(Na2CO^3-NaHCO3,质量比1:1)0.8%,木质素磺酸钠(SLS)+烷基苯磺酸盐(SDBS)0.4%的体系,在LS、SDBS质量比为1.5~3.0时,与原油(黏度19.3mPa·s,70℃,5111/s)间形成10.3mN/m超低界面张力。喇。。以口谢。为评价指标,通过正交设计实验,求得驱油剂最佳配方为:0.32%SIS+0.12%SDBS+0.15%HPAM+1.2%复碱。在注入、采出口之间有高渗透条带的平板砂岩模型上,在70℃研究了水驱、注调剖剂、注驱油剂各阶段注入压力变化,及充分调剖(0.515PV)之后采收率与驱油剂注入量之间的关系,求得最佳(最经济)的注入量为0.05PV。该技术在地层温度64℃、综合含水已达93.7%、采出程度仅21.6%的胜利油田桩106单元应用,获得了很好的结果,在包含一注四采的桩106—32井组,日产油量增加22.8吨,综合含水由94.5%降至88.4%;报道了所用调剖剂的组成。图4表3参7。A modified chitosan (MCS), N-(2-hydroxyl-3-sulfo) propanyl chitosan, with improved hydrophily and soluble in lots of polar solvents is prepared by reacting chitosan of 90% deacetylation with 2,3-epoxypropyl sulfonic acid in isopropanol solution. The degree of substitution, DS, of the MCS increases with increasing reaction temperature and time and reaches its highest value of 85 % in 8 hr reaction at 60℃. The procedure of synthesis is dipicted and the chemical structure of the MCS synthesized is identified IRphotometrically. The viscosity at 25℃ of 1% aqueous solution of the MCS decreases from 268 to 158 mPa.s when its DS increased from 13 % to 85 %. At equal dosage of 0.01%, the capability of the MCS to stabilize the foam formed by 0.01 mol/L solution of 4 foaming agent, anionic and nonionic, determined as foam half-life, decreases with increasing its DS value. For the MCS with DS = 13%, its foam stabilizing capability, determined as foam creation and half-life with nonionic foaming agent AEO-9, is higher than commonly used polymeric foam stabilizers PVA, CMS-Na, and PAM at equal dosage of 0.01%.
关 键 词:化学驱油剂 低界面张力体系 碱/表面活性剂/聚合物(ASP)体系 木质素磺酸盐/烷基苯磺酸盐复配物 组成与配方 最佳注入量 深部调剖 提高采收率 桩106单元
分 类 号:TE357.46[石油与天然气工程—油气田开发工程] TE39
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