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Numerical study of the gas-fluid displacement invasion behavior in a fractured carbonate reservoir

机译:裂缝性碳酸盐岩储层中气液驱替侵入行为的数值研究

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Gas-fluid displacement (GFD) invasion occurs frequently when drilling in fractured carbonate gas reservoirs. GFD invasion is a type of gas cut that is difficult to discover and is not widely known. In this study, the GFD invasion behavior was simulated based on the volume of fluid (VOF) method using a multidimensional two-phase flow model under different conditions and Fluent 63 software. The causes and process of GFD invasion were also explored. The effects of fracture width, drilling fluid viscosity and pressure difference were studied. The results show that the gas pressure increases because drilling fluid invades the fracture. Finally, GFD invasion occurs when the gas pressure is greater than the downhole pressure. A fracture width between 0.2 mm and 0.5 mm causes GFD invasion to obviously occur, and as the width increases, GFD invasion occurs more easily. Increasing the drilling fluid viscosity can postpone the GFD invasion to some degree. A small positive pressure difference between the wellbore and the fracture causes a more obvious GFD invasion. These results are also helpful for preventing and correcting GFD invasion. (C) 2015 Elsevier B.V. All rights reserved.
机译:在裂缝性碳酸盐岩气藏中钻探时,经常发生气液驱替(GFD)入侵。 GFD入侵是一种难以发现且尚未广为人知的气割类型。在这项研究中,基于流体体积(VOF)方法,使用多维两相流模型在不同条件下和Fluent 63软件对GFD入侵行为进行了模拟。还探讨了GFD入侵的原因和过程。研究了裂缝宽度,钻井液粘度和压差的影响。结果表明,由于钻井液侵入裂缝,导致气压升高。最后,当气体压力大于井下压力时,就会发生GFD侵入。在0.2mm至0.5mm之间的断裂宽度导致明显发生GFD侵入,并且随着宽度增加,GFD侵入更容易发生。增加钻井液粘度可以在一定程度上推迟GFD入侵。井眼与裂缝之间的正压差较小会导致更明显的GFD侵入。这些结果也有助于预防和纠正GFD入侵。 (C)2015 Elsevier B.V.保留所有权利。

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