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Application Rationale of Well Flow Test Complex Modules Covering Well Shut-in at the Bottomhole in terms of Eastern Siberia Carbonate Reservoirs Study

机译:井流量试验复杂模块的应用理由在底孔井下覆盖井底岩石岩石储层研究

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The paper presents the experience of oil and gas exploration in the fields of the Irkutsk region. The geological features of the studied facilities dictate a practical approach and the use of compact and efficient technological solutions that can later be successfully applied to a large number of fields with similar geology. The paper highlighted an optimized complex of works on the development and testing of wells target objects in a cased wellbore, using the technology of “the well shut-off at the bottomhole”. This arrangement ensures the effective implementation of work on the development of target objects and allows for high-quality registration of the bottomhole pressure dynamics. This engineering solution allows to perform a full cycle of hydrodynamical studies of well (well test) for a target interval in a relatively short time. The use of a tube bank significantly reduces the wellbore storage eand allows to obtain detailed data reliably characterizing reservoir properties and the structure of the reservoir under study. The article describes the technology of hydrodynamic studies, with the well shut-off at the bottomhole. The article deals with the research problems of highly productive, flowing facilities, with a concrete example and a detailed analysis of technological features, interpretation options, possible complications and measures for optimization. The possibility of replicating technology in various geological and technical conditions is considered.
机译:本文介绍了伊尔库茨克地区领域石油和天然气勘探的经验。研究设施的地质特征决定了一种实用的方法,使用稍后可以成功地应用于具有类似地质的大量领域的紧凑和高效的技术解决方案。本文突出了一种优化的作品,用于套管井筒中的井瞄准物体的开发和测试,使用“井底井关闭”的技术。这种安排确保了有效实施了对目标物体的开发的工作,并允许井底压力动力学的高质量登记。该工程解决方案允许在相对较短的时间内为目标间隔进行井(井测试)的完整循环的流体动力学研究。管芯的使用显着减少了井筒储存,允许在研究中获得详细的数据可靠地表征储层性质和储层的结构。本文介绍了流体动力学研究的技术,在井底井下截止。本文涉及高生产率,流动设施的研究问题,具体的例子和对技术特征,解释方案,可能的并发症和优化措施进行详细分析。考虑了在各种地质和技术条件下复制技术的可能性。

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