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Short-time pressure response during the start-up of a constant-rate production of a high pressure gas well

机译:在恒定速率生产高压气井过程中的短时压力响应

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The start-up flow of a constant-rate production of a high pressure gas well is studied, with emphasis on the effect of gas acceleration. Gas acceleration is important in the near wellbore region for a high pressure gas in a high permeability formation. It is shown that when gas acceleration is important, the system of governing equations for the porous media flow becomes hyperbolic. In response to an impulsively imposed mass flow-rate, a steep pressure front is created at the wellbore and it propagates into the formation. This steep pressure front is trailed by large amplitude pressure waves. As they travel away from the wellbore, the pressure front becomes less steep and the amplitude of the trailing waves decreases due to viscous damping. It is found that the pressure drawdown experiences a rapid increase followed by an oscillatory behavior in short times before approaching the classical logarithmic rise regime. The pressure gradient at the wellbore wall can grow to a large magnitude in the early times, which can cause a tensile failure of the rock materials near the wellbore.
机译:研究了高压气井等速生产的启动流程,重点是气体加速作用。对于高渗透率地层中的高压气体而言,气体加速在井眼附近区域很重要。结果表明,当气体加速度很重要时,多孔介质流的控制方程系统就变得双曲线。响应于脉冲施加的质量流率,在井眼处产生陡峭的压力前沿,并且该压力前沿传播到地层中。陡峭的压力前沿被大振幅压力波拖尾。当它们远离井眼行进时,由于粘性阻尼,压力前缘变得不那么陡峭,尾波的振幅减小了。发现压力下降经历了快速的增加,随后在接近经典对数上升机制之前在短时间内出现了振荡行为。井眼壁处的压力梯度在早期可能会大幅增长,这可能导致井眼附近岩石材料的拉伸破坏。

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