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Discussion on The Disappearance of Transition Flow of Fractured Gas Reservoir with Pressure Transient Analysis

机译:浅谈压力瞬态分析裂缝气体储层过渡流动消失

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In recent years, more and more fractured gas reservoirs were discovered in the world. In general, fractured gas reservoirs are defined as formation with double porosity system, which is composed with fissure and matrix, In reservoirs with double porosity system, only the fissure system are connected with the wellbore and have relatively high permeability, matrix rocks have very low permeability, gas can flow into the wellbore only via fissures, and the flow process be divided into the flow in fissures, transition flow and the flow in the total system. But transition flow is not found in the process of well testing, which results in misapplication of development decision support and selection in gas field development program. In this paper, the influent factors of fractured gas reservoir for estimation are studied by models of single well simulation, and the simulated results are analysis by the method of pressure transient analysis. For example: the time of pressure build-up test, production time, wellbore storage coefficient,kv/kh,the reservoir boundary, the pressure precision, the porosity of matrix and fracture, the permeability of matrix and fracture, the thickness of formation(partial perforation),skin, water saturation etc. The results of simulation show that the disappearance of the transition flow is caused by many factors, which include that the time of pressure build-up test is short, production time is not sufficiently long, ,the vertical permeability is much larger than the horizontal permeability and the formation is perforated partially, the time of the reservoir boundary for pressure is short than the transition flow, the porosity of matrix is close to the porosity of fracture, the permeability of matrix much smaller than the fracture permeability, the pressure precision is low. The transition flow is not affected by the skin, the wellbore storage coefficient and water saturation, which cover up the radial flow in fissure system.
机译:近年来,世界上发现了越来越多的骨折气体藏。通常,裂缝气体储存器被定义为具有双孔隙度系统的形成,该孔隙率系统由裂缝和基质组成,在具有双孔隙率系统的储层中,只有裂缝系统与井筒连接并具有相对高的渗透性,基质岩石具有非常低的渗透性,气体可以仅通过裂隙流入井筒,并且流程处理被分成裂缝,过渡流程和总系统流动的流动。但是在井测试过程中找不到过渡流,这导致在天然气场开发计划中的开发决策支持和选择的误认。本文通过单井模拟模型研究了估计裂缝气体储层的影响因素,并通过压力瞬态分析方法进行了分析。例如:压力积聚试验,生产时间,井筒储存系数,kV / kh,储层边界,压力精度,基质的孔隙率,基质的渗透性,骨折,形成厚度(部分穿孔),皮肤,水饱和度等。模拟结果表明,过渡流的消失是由许多因素引起的,包括压力积聚测试的时间短,生产时间不够长,垂直渗透率远大于水平渗透性,并且部分地穿孔,压力压力的储层边界的时间短于过渡流,基质的孔隙率接近骨折,矩阵的渗透率小得多比骨折渗透率,压力精度低。过渡流量不受皮肤,井筒储存系数和水饱和的影响,该井储存系数和水饱和度掩盖了裂缝系统中的径向流动。

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