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Gas and Gas Lift Wells' Testing With Surface Shut-in

机译:天然气和天然气升降井的地面关闭测试

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The main source for formation damage measurement is transient well testing. The formation damage measured is referred to as the skin factor. To reduce cost and operational risk, many wells are tested with surface shut-in and bottom-hole pressure measurement. If properly designed, performed, and interpreted, these tests provide valuable information on the well's skin condition. Wellbore storage becomes a very important factor with a surface shut-in. In addition to the wellbore fluids' compression and phase changes, temperature effects may be significant and extended depending on many factors including the well's depth. However, field data has shown that available analytical models do not accurately predict wellbore storage duration and pressure behavior. Moreover, extended wellbore storage pressure data may appear to behave in a way similar to radial flow as seen on the pressure derivative curve. This misinterpretation usually results in a negative curve. This misinterpretation usually results in a negative skin and the creation of nearby boundaries (i.e. which results in smaller reservoirs) making high potential wells appear to be limited. This paper will present empirical and practical field solutions to this problem. Well test, stimulation, and production field data supported by computer simulations from oil and gas wells in the Gulf of Mexico area will be presented. The data presented in this paper will demonstrate how the test design and interpretation will effect the overall reservoir and well management of the field.
机译:地层损伤测量的主要来源是瞬态井测试。测得的地层损伤称为集肤系数。为了降低成本和运营风险,对许多井进行了地面关井和井底压力测量测试。如果设计,执行和解释正确,这些测试将提供有关井的皮肤状况的宝贵信息。井眼存储成为关闭地面的重要因素。除了井筒流体的压缩和相变外,温度影响可能很明显,而且还会扩大,这取决于许多因素,包括井的深度。但是,现场数据表明,可用的分析模型不能准确预测井筒的储存时间和压力行为。此外,扩展的井筒存储压力数据可能表现出类似于压力导数曲线上所显示的径向流的方式。这种误解通常会导致负曲线。这种误解通常会导致蒙皮变薄,并且附近边界的形成(即导致储层较小)使高潜力的井似乎受到限制。本文将提供针对该问题的经验和实践现场解决方案。将提供墨西哥湾地区油气井的计算机模拟支持的试井,增产和生产现场数据。本文中提供的数据将证明测试设计和解释将如何影响油田的整体储层和井管理。

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