介电测井:原理、应用和巴西油田的实例

R. Herlinger
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引用次数: 3

摘要

本文综述了介电测井的物理原理、岩石物理评价及其应用。此外,我们将介绍它在巴西石油公司油田的使用历史。介电特性是由电场提供的激励产生的电荷排列产生的。从这个意义上说,水分子的极性特性可以量化储层中存在的水的体积,而不受盐度的影响。由于研究深度较浅,电介质工具在高不确定性矿化度条件下评价剩余油非常有用,特别是在由于注水和/或蒸汽注入而产生不确定性的成熟油田。尽管这种测井工具在石油工业中有着悠久的使用历史,但由于其高特异性、技术局限性和/或高成本,它很少在巴西石油公司的油田中使用。考虑到使用的高频和电极之间的距离,该工具可以提供非常浅的测量,这使得大多数油藏无法评估未开发层。由于这些特点,该工具被广泛应用于泥浆滤液侵入较小的低流动性油气地层。巴西石油公司将介电工具用于评价高黏度淡水储层,在定量含水饱和度和油气流动性方面取得了良好的效果。此外,该工具还用于盐下剩余油饱和度评估,以减少微电阻率测井的不确定性。除了评估含水饱和度外,许多工作还展示了介电测井的其他应用,例如确定电导率、盐度、润湿性、Archie的“m”和“n”电参数、CEC和层状储层的评估。
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Dielectric Logging: Principles, Applications, and Examples from the Brazilian Oilfields
This work aims to present a review of dielectric logging, including physical principles, petrophysical evaluation, and applications. In addition, we will present a history of its use in Petrobras oilfields. The dielectric properties are generated by the charge alignment created by an excitation provided by an electric field. In this sense, polar characteristics of water molecules allow quantification of volume of water present in the reservoir, independently of salinity. Owing to the shallow depths of investigation, dielectric tools are useful in evaluating residual oil in high uncertainty salinity conditions, especially in mature fields, where uncertainties occur due to injection of water and/or steam. Although this logging tool has a long history of use in the petroleum industry, it was rarely used in Petrobras oilfields due to the high specificity, limitations of the technique, and/or high cost. Considering high frequencies used and proximity between electrodes, the tool provides very shallow measurements, which makes it impossible to evaluate the virgin zone in most reservoirs. Due to these characteristics, the tool was widely employed in low mobility hydrocarbon formations, where mud filtrate invasion tends to be smaller. The dielectric tool was used in Petrobras to evaluate reservoirs with very high viscosity and fresh water, in which it showed good results in the quantification of water saturation and hydrocarbon mobility. Additionally, the tool was used in Pre-salt in order to evaluate residual oil saturation to diminish the uncertain of microresistivity logs. Besides evaluating water saturation, many works have shown other applications for dielectric logging, such as to determine conductivity, salinity, wettability, Archie's "m" and "n" electric parameters, CEC, and evaluation of laminated reservoirs.
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