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首页> 外文期刊>Scientific reports. >Experimental Study of Key Effect Factors and Simulation on Oil Displacement Efficiency for a Novel Modified Polymer BD-HMHEC
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Experimental Study of Key Effect Factors and Simulation on Oil Displacement Efficiency for a Novel Modified Polymer BD-HMHEC

机译:新型改性聚合物BD-HMHEC对油位移效率的关键效应因子和仿真的实验研究

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A novel synthetic hydrophobically modified hydroxyethyl cellulose (HEC) using bromododecane (BD) was developed in our previous paper, which we denote as BD-HMHEC. A series of one dimensional core displacement experiments were continually conducted to evaluate the key effect factors on the resistance factor (FR) and residual resistance factor (FRR) of BD-HMHEC solution, including polymer concentration, core permeability and injection rate. Results have shown that BD-HMHEC has higher FR and FRR and has much better oil displacement performance than HEC during oil displacement process. Meanwhile, compared with HEC flooding, the key effects on oil displacement efficiency of BD-HMHEC flooding were investigated, including polymer concentration, injection slug and injection rate. A numerical simulation study has been developed by the Computer Modelling Group (CMG) simulator. Results have shown that BD-HMHEC flooding could cause better oil displacement efficiency than HEC flooding at the same condition. As indicated by one dimensional core displacement experimental results, the further incremental oil recovery of switching to BD-HMHEC flooding could increase by 7.0~8.0% after hydrolyzed polyacryamide (HPAM) flooding. The studies indicate that BD-HMHEC has great potential application during enhanced oil recovery (EOR) processes in oilfields.
机译:在我们之前的纸上开发了使用溴二癸烷(BD)的新型合成的疏水改性的羟乙基纤维素(HEC),我们表示为BD-HMHEC。不断进行一系列一维核心位移实验,以评估BD-HMHEC溶液的电阻因子(FR)和残留电阻因子(FRR)上的关键效应因子,包括聚合物浓度,核心渗透性和注射率。结果表明,BD-HMHEC具有更高的FR和FRR,并且在油位移过程中具有比HEC更好的油位移性能。同时,研究了HEC洪水,研究了对BD-HMHEC洪水的对油位移效率的关键影响,包括聚合物浓度,注射块和注射率。计算机建模组(CMG)模拟器开发了数值模拟研究。结果表明,BD-HMHEC洪水可能会在同一条件下造成比HEC洪水更好的油位移效率。如一维核心位移实验结果所示,在水解聚酰胺(HPAM)泛滥后,切换到BD-HMHEC洪水的进一步增量油回收率可能会增加7.0〜8.0%。研究表明,BD-HMHEC在油田增强的采油(EOR)过程中具有很大的潜在应用。

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