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Numerical simulation of formation damage by drilling fluid in low permeability sandstone reservoirs

机译:低渗透砂岩储层钻井液形成损伤的数值模拟

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Understanding the formation damage surrounding the well during the drilling operation is the key to predict damage degree and protect the formation in oil/gas reserviors. Based on the core drainage results, we obtained an empirical relationship between the invasion volume of drilling fluid and permeability reduction of formation. Furthermore, the equation is incorporated into a commercial reservior numerical simulation simulator to characterize the behaviors of drilling fluid invasion process. The results show that, although the invasion depth in low permeability reservoirs is short with the range of 1.7–2.5?m, the effect on recovery factor is significant due to the narrow seepage area in the near fracture region. When considering the formation damage, the pressure in the near-fracture damage region drops sharply, leading to a three-stage shape in pressure distribution curve. In addition, we found that high viscosity and low density oil-based slurry and shorter soaking period are conducive to decrease the formation damage during drilling operation. This work reveals the fundamental mechanisms of formation damage in low permeability reservoirs, which is a theoretical basis in formulation drilling fluids and optimization operation parameters.
机译:了解钻井操作期间井周围的形成损坏是预测损伤程度并保护地层在油/燃气储存中的钥匙。基于核心排水的结果,我们在钻孔液的侵袭体积与形成的渗透率降低之间获得了经验关系。此外,该等式被纳入商业储勤数值模拟模拟器中,以表征钻孔流体侵入过程的行为。结果表明,尽管低渗透储存器中的入侵深度短,但由于近骨折区域中的狭窄渗流区域,对恢复因子的影响是显着的。在考虑形成损伤时,近断裂损伤区域的压力急剧下降,导致压力分布曲线的三级形状。此外,我们发现高粘度和低密度油基浆料和较短的浸泡期有利于在钻井操作期间降低地层损坏。这项工作揭示了低渗透储层中形成损伤的基本机制,这是配方钻井液和优化操作参数的理论基础。

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