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Forecast of fractured horizontal well productivity in dual permeability layers in volcanic gas reservoirs

机译:火山岩气藏双渗透层水平井裂缝产能预测

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In view of the flow particularity of fractured horizontal wells in dual permeability layers in volcanic gas reservoirs, based on the equivalent flowing resistance method and superposition principle, a new productivity forecasting method for fractured open-hole horizontal wells with multi-transverse fractures in volcanic gas reservoirs is established using a new pseudo-pressure function, with the comprehensive effect of gas slippage effect, starting pressure gradient, stress sensitivity effect and turbulence effect in fractures taken into consideration. The simulation results show that in the production process of fractured open-hole horizontal wells, and the starting pressure gradient has the most remarkable impact on gas well productivity, followed by pressure-sensitive effect and turbulence effect. The slippage effect has the lowest influence. Production pressure difference in gas reservoirs with strong pressure-sensitive effect should be reduced. Gas well production increases as the fracture half-length increases. With the increase of fracture number, the increase of gas production slows down, there exists an optimal number of cracks. The factor affecting gas well production most significantly is fracture conductivity capacity. Different gas reservoirs have different optimal fracture conductivity capacity.
机译:鉴于火山岩气藏双渗透层水平井裂缝的流动性,基于等效流阻法和叠加原理,研究了火山岩多横向裂缝裂缝水平井水平井产能预测的新方法利用新的拟压力函数建立了储集层,并综合考虑了裂缝中的瓦斯滑移效应,起始压力梯度,应力敏感性效应和湍流效应的综合作用。仿真结果表明,在压裂裸眼水平井生产过程中,起始压力梯度对气井产能影响最大,其次是压敏效应和湍流效应。滑移效应的影响最小。应当减小具有压敏作用的气藏的生产压力差。气井产量随着裂缝半长的增加而增加。随着裂缝数的增加,产气量的增加变慢,存在最佳裂缝数。影响气井产量的最大因素是裂缝导流能力。不同的气藏具有不同的最佳裂缝导流能力。

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