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Numerical Modeling of Fully-Transient Flow in the Near-Wellbore Region During Liquid Loading in Gas Wells

机译:气井液体载荷近井筒区全瞬态流动的数值建模

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In oil and gas field operations, the dynamic interactions between reservoir and wellbore cannot be ignored, especially during transient flow in the near-wellbore region. A particular instance of transient flow in the near-wellbore region is the intermittent response of a reservoir that is typical of liquid loading in gas wells. Despite the high level of attention that the industry has devoted to the alleviation of liquid loading, the fundamental understanding of the associated phenomena is still surprisingly weak. This applies not only to the flows in the wells, but also to the ways in which these flows interact with those in the reservoir. The classical way of dealing with these interactions, inflow performance relationships (IPRs), relate the inflow from the reservoir to the pressure at the bottom of the well, which is related to the multiphase flow behavior in the tubing. These relationships are usually based on steady-state or pseudo steady-state assumptions. However, such IPRs may be inadequate when a transition from an acceptable liquid loading regime to an unacceptable occurs over a relatively small range of production rates and, hence, over a relatively short time. The most satisfactory solution would be to couple a transient model for the reservoir to a transient model for the well. This paper presents the results of a numerical modeling effort focused on the identification of the transient pressure profile in the near-wellbore region during fully transient flow conditions. The preliminary results, obtained for a single-phase (gas) situation and for a three-phase (oil-water-gas) situation, show a "U-shaped" pressure profile along the reservoir radius. The existence of a similar pressure profile could be the explanation for the reinjection of the heavier phase into the reservoir during liquid unloading in gas wells.
机译:在石油和天然气场操作中,水库和井筒之间的动态相互作用不能被忽略,尤其是在近井筒区域的瞬态流动期间。近井眼区域中的瞬态流动的特定实例是储存器的间歇响应,其典型的气体阱中的液体负载。尽管该行业致力于减轻液体载荷的高度关注,但对相关现象的根本理解仍然令人惊讶。这不仅适用于井中的流量,而且还适用于这些流量与水库中的方式的方式。处理这些相互作用的经典方式,流入性能关系(IPRS),将储存器的流入与井底的压力相关联,这与管中的多相流动行为有关。这些关系通常基于稳态或伪稳态假设。然而,当从可接受的液体装载制度转换到不可接受的液体加载制度以在相对较小的生产率范围内发生不可接受的情况时,这种IPRS可能不足,并且在相对短的时间内发生。最令人满意的解决方案是将库的瞬态模型耦合到井的瞬态模型。本文介绍了数值建模努力的结果,其专注于在完全瞬态流动条件下识别近井筒区域中的瞬态压力分布。为单相(气体)情况和三相(油水 - 水)情况获得的初步结果显示沿储存器半径的“U形”压力曲线。在液体井中的液体卸载过程中,类似的压力分布的存在可以是对液体卸载过程中较重的相位较重的解释。

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