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Water Saturation Evaluation in Shaly Sand Reservoirs Using Advanced X-ray Diffraction and Cation Exchange Capacity Measurements

机译:使用先进的X射线衍射和阳离子交换容量测量筛子晶砂储层的水饱和度评价

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Interpretation problems are commonly associated with calculating water saturation in non-homogenous shaly sand reservoirs. Recent studies on the electrical anisotropy of shaly sands have shown that the level of our understanding and our ability to correctly and accurately evaluate low resistivity & low contrast pay can be greatly improved. The model (“Expansible Clay Model”) developed in this work is similar in form to the recent shaly sand Dual Water Model. It is an experiment based model designed to directly assess and quantify the effects of the mineralogical and electrical properties of clay minerals in heterolithic reservoirs. Clay minerals usually have multiple effects on petrophysical properties obtained from geophysical well log measurements. The Expansible Clay Model evaluates these effects via direct measurement of independent mineralogy and conductivity of the clay minerals within reservoir sands. The model integrates the following as an effective basis for characterizing shaly sand reservoirs: 1.Rietveld based siroquant assay for quantitative X-ray diffraction (XRD) used in determining mineral percentages from standard XRD trace patterns, 2. Cation exchange capacity (CEC) used to determine the quantity of cations involved in the exchange at the shale-water interface, 3. Porosity, permeability, density and resistivity measurements, Overall, correlations drawn from the model when applied, yields valid results for total water saturation which appeared consistent with those earlier calculated using well known water saturation models (Dual Water and Juhasz). A total of 23 core plugs from two wells in the Cliff Head Field, Perth Basin, were analyzed for this study.
机译:解释问题通常与计算非均匀谢地砂储层中的水饱和度有关。最近关于谢地砂岩电气各向异性的研究表明,我们的理解水平和能力可以大大提高,可以大大提高了低电阻率和低对比度工资。在这项工作中开发的模型(“可扩展粘土模型”)以近期谢地沙子双水模型的形式类似。它是一种基于实验的模型,旨在直接评估和量化粘土矿物在异质储层中的矿物学和电性能的影响。粘土矿物通常对从地球物理井日志测量获得的岩石物理性质具有多种影响。可膨胀的粘土模型通过直接测量储层砂内的粘土矿物的直接测量来评估这些效果。该模型将以下内容整合为表征Shaly砂储存器的有效依据:1. rietveld基于定量X射线衍射(XRD)的Siroquant测定用于从标准XRD迹线图案中测定矿物百分比,2.使用的阳离子交换能力(CEC)要确定页岩水界面交换中涉及的阳离子的数量,3.孔隙率,渗透性,密度和电阻率测量,总体而言,从施用时从模型中汲取的相关性,产生与那些符合那些符合那些符合的水饱和度的有效结果早些时候使用众所周知的水饱和模型(双水和Juhasz)计算。分析了悬崖头领域的两个井中总共23个核心插头,为这项研究分析了珀斯盆地。

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