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Evaluation of the Relative Importance of Parameters Influencing Perforation Cleanup

机译:评价参数影响穿孔清理的相对重要性

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Completion of cased and cemented wells by shaped-charge perforation results in damage to the formation, which can significantly reduce well productivity. Typically, underbalanced conditions are imposed during perforation in an effort to remove damaged rock and shaped-charge debris from the perforation tunnel. Immediately after the shaped-charge jet penetrates the formation, there is a transient surge of fluid from the formation through the perforation and into the well bore. Experimental evidence suggests that it is this transient pressure surge that leads to the removal of damaged rock and charge debris leaving an open perforation tunnel. We have developed a two-stage computational model to simulate the perforation process and subsequent pressure surge and debris removal. The first stage of the model couples a hydrocode with a model of stress-induced permeability evolution to calculate damage to the formation and the resulting permeability field. The second stage simulates the non-Darcy, transient fluid flow from the formation and removes damaged rock and charge debris from the perforation tunnel. We compare the model to a series of API RP19B section 4 flow tests and explore the influence of fluid viscosity and rock strength on the final perforation geometry and permeability.
机译:通过形状充电穿孔完成套管和水泥孔,导致形成的损坏,这可以显着降低良好的生产率。通常,在穿孔期间施加不平衡条件,以便从穿孔隧道中除去受损的岩石和形状的碎屑。在成型射流穿透地面后,立即通过穿孔和进入井孔,从地层瞬时喘气。实验证据表明,这是这种瞬态压力浪涌,导致去除损坏的岩石和电荷碎片,留下开放穿孔隧道。我们开发了一种两级计算模型来模拟穿孔过程和随后的压力浪涌和碎片去除。该模型的第一阶段与应力诱导的渗透率演化模型耦合的液相影,以计算对地层的损伤和所得的渗透性场。第二阶段模拟非达西,从地层中的瞬态流体流动,从穿孔隧道中移除损坏的岩石和充电碎片。我们将模型与一系列API RP19B第4部分流动试验进行比较,并探讨流体粘度和岩石强度对最终穿孔几何形状和渗透性的影响。

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