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Restudy of Main Factors of Effects on ASP Flood and Expansion of Capillary Theory in Heterogeneous Reservoirs

机译:作者:张莹莹,王莹,王莹,王莹,王莹,王莹,王莹,王莹

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The demonstration projects of ASP flooding have been implemented in Daqing oil field. With the enlarging of the scope of testing areas, the effects of the scale production resulted from high concentration of alkali (1.2%wt) have been gradually exposed. It resulted in many questions, such as the increase of the resistance of formation’s percolation, the decrease of production and the blocking of pumps. All these have become the severe obstructer of the application of ASP flooding. As to the formation conditions in Daqing oil field, the effects of alkali concentrations on the curling degree of polymer molecules in ASP solution have been studied by using Nanoscope IIIa type AFM in Digital Instruments Company in America. The results show that the chains of polymer molecules spread in liquid phase without alkali, but the chains curl for adding alkali. In the condition of high concentration alkali, the curled chains of polymer molecules are very tight. The polymer molecules do not spread fully, and exist in the state of assembling of many molecules on their sides. Correspondingly, the rheological characteristic of ASP solutions has been studied by using HAAKA apparatus for analyzing rheology. Moreover, the physical simulations of ASP flooding on three-dimensional heterogeneous models and filling sand tubes have been performed. The results show that the ASP solution with a low alkali’s concentration and a higher viscoelasticity can get a very high oil recovery by enlarging sweep efficiency and unit displacement efficiency. To heterogeneous reservoir, the viscoelasticity of ASP solution plays a more important role than the ultra low interfacial tension. Else, since the effective distance of action of the surfactant over 60% of ASP cost is very limited in formations, the ultra low interfacial tension is difficult to bring a benefit which it should does. Through a lot of calculations, the revised correlation of capillary number has also been presented in this paper. Finally, through analyzing of the effect of the demonstration project in west of Xing-2 area, the significance of the viscoelasticity has been verified again from the field tests. The feasibility of ASP flooding with low alkali has been determined further, and a new method has been studied for solving alkali scale in ASP flooding in this paper.
机译:ASP洪水的示范项目已在大庆油田实施。随着检测区域的范围扩大,逐渐暴露于高浓度的碱(1.2%wt)产生的规模生产的影响。它导致许多问题,例如形成形成的抵抗力的抵抗力,生产的降低和泵的阻挡。所有这些都已成为ASP洪水应用的严重障碍物。关于大庆油田中的形成条件,通过在美国数字仪器公司中使用纳米镜IIIA型AFM研究了碱浓度对ASP溶液中聚合物分子卷曲度的影响。结果表明,聚合物分子链在没有碱的液相中蔓延,但链卷曲加入碱。在高浓度碱的条件下,聚合物分子的卷曲链非常紧。聚合物分子不会完全铺展,并且存在于它们侧面上许多分子的组装状态。相应地,已经通过使用哈卡可分析流变学,研究了ASP解决方案的流变特性。此外,已经进行了三维异质模型和填充砂管对三维异质模型和填充砂管的物理模拟。结果表明,具有低碱浓度和更高粘弹性的ASP溶液通过扩大扫描效率和单位位移效率,可以获得非常高的油回收。对于异构储存器,ASP解决方案的粘弹性比超低界面张力起作用更重要的作用。否则,由于表面活性剂的有效作用距离超过60%的ASP成本的形成是非常有限的,因此难以使其应该具有的益处。通过大量的计算,本文还提出了毛细管数的修订相关性。最后,通过分析xing-2区域西部示范项目的效果,粘弹性的重要性已经再次从现场测试中进行了验证。已经进一步确定了具有低碱性的ASP泛滥的可行性,并研究了一种新方法,用于在本文中的ASP洪水中解决碱尺度。

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