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Macro Insights from Interval Pressure Transient Tests: Deriving Key Near-Wellbore Fracture Parameters in a Light Oil Reservoir Offshore Norway

机译:来自间隔压力瞬态测试的宏观洞察:在挪威轻质油藏近井井骨折参数中推导近井口骨折参数

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Fractures can be first-order controls on fluid flow in hydrocarbon reservoirs.Understanding the characteristics of fractures such as their aperture,density,distribution,conductivity,connectivity,etc,is key for reservoir engineering and production analysis.Well testing plays a key role in the the characterisation of fractured reservoirs,especially.New advances in the Pressure Transient Analysis (PTA) have enabled the interpretation of production data in a way where the resulting geological scenarios are in better agreement with fracture patterns observed in outcrop analogues.Traditionally,Drill Stem Test (DST) data have been the primay source of information for well testing.However,we hypothesise that wireline conveyed tools designed for Interval Pressure Transient Testing (IPTT) could yield a more throrough description of the near-wellbore heterogeneities,including fractures.Hence,we investigate the applicability of IPTT for characterising fractured reservoirs using detailed numerical simulations models with accurate wellbore representation to generate synthetic IPTT responses that can obtained through a next-generation wireline testing tool called SATURN.We particularly focus on cases where fractures are present in the near-wellbore region but do not intersect the wellbore.The study included parameters such as fracture densities and conductivities,distance between fractures and wellbore and the vertical extension of the fractures across geological beds.The impact of the different fracture scenarios on the pressure transient tests was recorded as characteristic signatures on diagnostic plots (pressure derivative curves).We have called these curves"IPTT-Geotypes";they can be used to assist the interpretation process of IPTT responses.To the best of our knowledge,this is the first time pressure derivative type curves for IPTT in fractured reservoirs are presented in the literature.A field example of an IPTT case was analysed using the concept of geological well testing.We integrated the information from petrophysical logs and the IPTT-Geotypes to assist the calibration of a reservoir model developed to represent the geological setting of the tested reservoir interval.The results provided a sound interpretation of the reservoir geology and quantitative estimation of the matrix and fracture parameters.
机译:骨折可以是在烃流体流reservoirs.Understanding骨折的特性,如它们的孔径,密度,分布,导电性,连接性等一阶的控制,是储层工程和生产analysis.Well检测键中起着关键的作用裂缝性储层的表征,especially.New的压力前进瞬态分析(PTA)已启用生产数据的解释的方式,其中所得的地质情况是在与观察露头analogues.Traditionally骨折类型,钻杆更好的协议测试(DST)的数据一直是信息的primay来源以及testing.However,我们推测,有线传达设计的间隔压力瞬态测试(IPTT)工具可以产生近井异质性的更throrough描述,包括fractures.Hence我们调查IPTT的适用性,使用详细的数值表征裂缝性油藏仿真准确的井筒表示模型以生成可以通过被称为一SATURN.We下一代有线测试工具获得特别重点放在骨折是存在于所述近井区域但不交叉包括wellbore.The研究例合成IPTT响应参数,如断裂密度和电导率,骨折和井眼和横跨在压力瞬态测试不同的断裂场景地质beds.The冲击裂缝的垂直延伸之间的距离被记录为在诊断图(压力导数曲线)特征签名。我们称这些曲线“IPTT-Geotypes”,它们可以被用来帮助IPTT responses.To在我们所知的解释过程中,这是IPTT在裂缝性储层首次压力导型曲线在文献中提出使用地质以及TESTIN的概念进行了分析的IPTT箱子.A字段示例g.We集成从岩石物理日志和IPTT-Geotypes的信息,以协助储层模型的校准开发来表示的地质背景测试贮存interval.The结果提供的油藏地质的声音解释和定量估计所述矩阵的和断裂参数。

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