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Productivity Prediction for Stacked Multilateral Horizontal Well Under Open Hole Series Completion Methods

机译:裸眼系列完井法下多边水平井叠置产能预测

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Productivities of stacked multilateral horizontal well under open hole series completion methods were predicted by an analytical model. The analytical model was established using conformal transformation, mirror image, potential superposition and equivalent flow resistance. The ideal well’s formula will be simplified to the famous Borisove’s formula when stacked well has only one branch and locate it in middle vertical depth of reservoir. Several productivity influencing factors were analyzed to provide references for stacked well completion design. Case studies show that, stacked well productivity decreases with higher screen filtration precision; Conventional horizontal well productivity is more sensitive to filtration precision than that of stacked well; Stacked well’s vertical location in reservoir with upper and lower sealed boundary has little impact on productivity; Analytical model overestimates productivity because of ignorance of seepage disturbance and well bore flow pressure drop, an infinitesimal sectional model works as a correction model and a correction coefficient is obtained to effectively reduce the error of analytical model.
机译:通过解析模型预测了裸眼系列完井方法下叠置多边水平井的产能。使用保角变换,镜像,电位叠加和等效流阻建立了分析模型。当堆叠井只有一个分支并将其定位在储层的垂直中深度时,理想井的公式将简化为著名的Borisove公式。分析了几个影响生产率的因素,为叠井完井设计提供参考。案例研究表明,随着筛网过滤精度的提高,叠层井的生产率下降。常规水平井生产率比叠置井对过滤精度更敏感。堆叠井的垂直位置在具有上下密封边界的储层中对生产率的影响很小;由于渗流扰动和井筒流压降的无知,分析模型高估了生产率,采用无穷小截面模型作为校正模型,并获得校正系数以有效减少分析模型的误差。

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