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Stress Field Analysis around the Residual Oil Film in Formation Micro-pore with Polymer Flooding

机译:聚合物驱驱地层微孔残余油膜周围应力场分析

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There is still nearly 40% of the crude oil remaining in the rock strata formed in residual oil after primary and secondary recovery. In order to improve oil recovery, to find the residual oil recovery method, to further improve the theoretical system of polymer flooding. Through the establishment of constitutive equation and flow equation and the boundary conditions suitable for describing the flow of viscoelastic fluid of polymer solution, applying computational fluid dynamics software, stress field around the residual oil film in formation micro-pore was calculated, stress was given around the residual oil film on the lipophilic rock surface with different situations of polymer solution, relationship between the viscoelasticity of polymer solution and the force around the residual oil film was analyzed. The results show that: The viscoelasticity of polymer solution is the main reasons for non-uniform stress distribution around the residual oil film, increasing the viscoelasticity of polymer solution, the stronger of the non-uniformity around the residual oil film, more beneficial to the deformation of residual oil film, further split and to reach the launch conditions of residual oil.
机译:在一次和二次采油后,残留在剩余油中形成的岩层中仍然有将近40%的原油残留。为了提高采油率,寻找剩余的采油方法,进一步完善了聚合物驱理论体系。通过建立本构方程和流动方程以及适合描述聚合物溶液粘弹性流体流动的边界条件,应用计算流体力学软件,计算了地层微孔残余油膜周围的应力场,并给出了周围的应力。分析了聚合物溶液在不同情况下的亲脂性岩石表面的残余油膜,分析了聚合物溶液的粘弹性与残余油膜周围力之间的关系。结果表明:聚合物溶液的粘弹性是残余油膜周围应力分布不均匀的主要原因,增加了聚合物溶液的粘弹性,残余油膜周围的不均匀性越强,越有利于残油膜变形,进一步分裂并达到残油的发射条件。

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