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An Analytical Solution for Transient Productivity Prediction of Multi-Fractured Horizontal Wells in Tight Gas Reservoirs Considering Nonlinear Porous Flow Mechanisms

机译:考虑非线性多孔流量机构的狭窄气体储层多断裂水平井的瞬态生产率预测分析解决方案

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摘要

Multi-fractured horizontal wells (MFHW) is one of the most effective technologies to develop tight gas reservoirs. The gas seepage from tight formations in MFHW can be divided into three stages: early stage with high productivity, transitional stage with declined productivity, and final stage with stable productivity. Considering the characteristics and mechanisms of porous flows in different regions and at different stages, we derive three coupled equations, namely the equations of porous flow from matrix to fracture, from fracture to near wellbore region, and from new wellbore region to wellbore then an unstable productivity prediction model for a MFHW in a tight gas reservoir is well established. Then, the reliability of this new model, which considers the multi-fracture interference, is verified using a commercial simulator (CMG). Finally, using this transient productivity prediction model, the sensitivity of horizontal well’s productivity to several relevant factors is analyzed. The results illustrate that threshold pressure gradient has the most significant influence on well productivity, followed by stress sensitivity, turbulence flow, and slippage flow. To summarize, the proposed model has demonstrated a potential practical usage to predict the productivity of multi-stage fractured horizontal wells and to analyze the effects of certain factors on gas production in tight gas reservoirs.
机译:多裂缝水平井(MFHW)是开发储气储层最有效的技术之一。从MFHW中的紧密形成的气体渗流可分为三个阶段:早期的生产率,过渡阶段的生产率下降,生产力稳定的最终阶段。考虑到不同地区和不同阶段多孔流动的特征和机制,我们得出三个耦合方程,即从基质到骨折的多孔流量的方程,从骨折到井筒区域附近,从新的井筒区域到井筒,然后是不稳定的紧密燃气水库中MFHW的生产率预测模型得到了很好的成熟。然后,使用商业模拟器(CMG)来验证考虑多骨折干扰的新模型的可靠性。最后,使用这种瞬态生产率预测模型,分析了水平井生产力对几个相关因子的敏感性。结果说明阈值压力梯度对良好生产率具有最显着的影响,然后是应力灵敏度,湍流流动和滑动流动。总而言之,拟议的模型证明了预测多级破碎水平井的生产率的潜在实用用法,并分析了某些因素对狭小气体储层气体生产的影响。

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