利用元素捕获光谱(ECS)对碳酸盐进行精确的岩石物理解释

Usama Alameedy
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引用次数: 0

摘要

元素捕获光谱(ECS)是石油工业中确定储层岩层组成和性质的重要工具。了解储层中不同矿物的类型和丰度对于准确的岩石物理解释、储层工程实践和地层对比至关重要。ECS测量岩石的元素含量,这直接影响到储层特征的一些物理性质,如孔隙度、流体饱和度、渗透率和基质密度。准确确定这些属性的能力可以更好地绘制储层图,提高产量,并更有效地管理资源。准确测定碳酸盐岩和其他材料的矿物学和孔隙度是本文的目的。方解石、白云石、石英、粘土(伊利石)、硬石膏和黄铁矿,以及作为流体的水,都被考虑在计算中。通过这些数据可以确定地层的岩性和孔隙度。通过与地质报告中岩心描述的对比,发现该区具有明显的独特岩性带,预测精度较高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate Petrophysical Interpretation of Carbonate using the Elemental Capture Spectroscopy (ECS)
Elemental capture spectroscopy (ECS) is an important tool in the petroleum industry for determining the composition and properties of rock formations in a reservoir. Knowledge of the types and abundance of different minerals in the reservoir is crucial for accurate petrophysical interpretation, reservoir engineering practices, and stratigraphic correlation. ECS measures the elemental content of the rock, which directly impacts several physical properties that are essential for reservoir characterization, such as porosity, fluid saturation, permeability, and matrix density. The ability to accurately determine these properties leads to better reservoir mapping, improved production, and more effective resource management. Accurately determining the mineralogy and porosity of carbonate rocks and other materials is the aim of this paper. Calcite, dolomite, quartz, clay (illite), anhydrite, and pyrite, in addition to water as a fluid, are taken into account in the computation. The formation's lithology and porosity can be ascertained from this data. When compared to the core descriptions in the geological report, the results demonstrated a distinct zone of unique lithology with good prediction accuracy.
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