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Calculating Asphaltenes Precipitation Onset Pressure by Using Cardanol as Precipitation Inhibitor: A Strategy to Increment the Oil Well Production

机译:计算沥青质沉淀发病压力通过使用Cardanol作为降水抑制剂:促进油井生产的策略

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Asphaltenes precipitation is considered a formation damage problem,which can reduce the oil recovery factor.It fouls piping and surface installations,as well as cause serious flow assurance complications and decline oil well production.Therefore,researchers have shown an interest in chemical treatments to control this phenomenon.The aim of this paper is to assess the asphaltenes precipitation onset of crude oils in the presence of cardanol,by titrating the crude with n-heptane.Moreover,based on this results obtained at atmosphere pressure,the asphaltenes precipitation onset pressure were calculated to predict asphaltenes precipitation in the reservoir,by using differential liberation and refractive index data of the oils.The influence of cardanol concentration on the asphaltenes stabilization of three Brazilian crude oils samples(with similar API densities)was studied.Therefore,three formulations of cardanol were prepared: The formulations were added to the crude at 5:98,1.5:98.5,2:98 and 4:96 ratios.The petroleum samples were characterized by API density,elemental analysis and differential liberation test.The asphaltenes precipitation onset was determined by titrating with n-heptane and monitoring with near-infrared(NIR).The asphaltenes precipitation onset pressures were estimated.The envelope phase of the crude oils were also determined by numerical simulation(pipesim).In addition,supported in the downhole well profile and a screening methodology,the adequate artificial lift systems(ALS)for the oils were selected.Finally,the oil flow rates were modelling by NODAL analysis production system in the SNAP software.The results of this study show the refractive index for each sample,and the predictive pressure to asphaltene instability.The asphaltenes precipitation onset of the crude oils were 2.06,2.30 and 6.02 mL of n-heptane/g of oil.The cardanol was an effective inhibitor of asphaltenes precipitation,since it displaces the precipitation pressure of the oil to lower values.This indicates that cardanol can increase the oil wells productivity.
机译:沥青质沉淀被认为是一种形成损伤问题,可以减少油回收因子。犯规管道和表面设施,以及导致严重的流量保证并发症和油井生产。因此,研究人员对控制的化学治疗有兴趣本文的目的是通过用N-庚烷滴定原料,评估糖籽酸盐的溶解沉淀出原油的沉淀发作,基于在大气压力下获得的结果,沥青质沉淀发病压力是计算出通过使用油的差异释放和折射率数据来预测储层中的窒息沉淀。研究了糖醇浓度对三种巴西原油样品(具有相似API密度)的沥青型稳定化的影响。因此,三种配方制备糖醇:将制剂加入到粗产物5:98,1.5:98.5,2:98中4:96的比率是通过API密度,元素分析和差异释放试验表征石油样品。通过用正庚烷滴定和用近红外(NIR)监测来测定沥青质沉淀发作。沥青质沉淀发作压力估计。原油的包络阶段也通过数值模拟(Pipesim)确定。此外,在井下井剖面和筛选方法中,选择了用于油的足够人工升力系统(ALS)。最后,油流量在Snap软件中通过节点分析生产系统进行建模。该研究的结果表明每个样品的折射率,以及对沥青质不稳定的预测压力。沥青质沉淀出现原油的沉淀爆发为2.06,2.30和6.02 N-庚烷/ g油。糖醇是沥青质沉淀的有效抑制剂,因为它取代了油的沉淀压力降低值。这表明Cardanol可以提高油井生产力。

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