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3种新型聚合物驱油效率对比研究

Oilfield Chemistry(2003)

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Abstract
在模拟辽河锦16块油藏条件下(温度56℃,地层水矿化度3 770 mg/L,脱气原油地面粘度68 mPa*s,密度0.939 g/cm3),实验考察了3 种新型驱油用聚合物的应用性能并与常用HPAM作了对比:①梳形聚合物KYPAM-2;②疏水缔合聚合物DH-XN;③疏水缔合聚合物与助剂复配物GH-YHS;④对比物HPAM MO-4000.在20 0~2 000 mg/L浓度范围内,在8 s-1下,①的溶液粘度比④约高1.6~1.8倍;②和③的溶液粘度在低浓度下低而在高浓度下高.聚合物浓度为1 000 mg/L时,在5~120 s-1 范围内①和④的流变曲线属假塑性流体型,②和③的流变曲线虽为剪切变稀型,但由2个曲线段组成,低剪切速率下粘度下降较平缓.储能模量G′与频率f关系曲线的位置,①最高,即粘弹性最强,②和③居中,④最低,即粘弹性最弱.30~74℃范围的粘温关系,①和④的变化趋势相同,①的增粘能力为④的1.52~1.65倍;②和③的粘度随温度下降幅度大.在人造石英砂胶结岩心上提高水驱残余油采收率的规律,①与④相同,但①的驱油效率较④高一倍;②的注入量由0.2 PV增加到0.3 PV时采收率急剧增大;③的采收率增幅最小.粘浓曲线表明,疏水缔合聚合物在地层水溶液中显示2个缔合浓度,②和③的第一缔合浓度分别为766和1 167 mg/L,第二缔合浓度分别为1 908和2 155 mg/L.从分子结构和水溶液性质对实验结果作了解释和探讨.图7表1参9.
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Key words
Aqueous polymer solution,Comb-like polymer,Flooding polymers,Heat resistance,Hydrophobically associating polymers,Oil displacement efficiency,Rheologic behavior,Viscoelasticity
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