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多孔介质建模对伽马-伽马测井仪响应的影响。

Effect of modeling porous media on the response of gamma-gamma well-logging tool.

作者信息

Rasouli Fatemeh S, Masoudi S Farhad

机构信息

Department of Physics, K.N. Toosi University of Technology, P.O. Box 15875-4416, Tehran, Iran.

出版信息

Sci Rep. 2020 Apr 22;10(1):6823. doi: 10.1038/s41598-020-63323-x.

Abstract

The well logging is known as a technique of making petrophysical measurements in the sub-surface earth formations through a drilled borehole to reach the characterization of the physical properties of rocks and fluids. Considering the fact that reservoirs are complex fractured media which the fluid can flow through the porosities, the distribution model of oil in the medium needs to be investigated in detail and to be well quantified. To study this effect, a typical gamma-gamma logging tool containing Cs source and two NaI detectors was modeled by using the MCNPX code. The medium was filled with numerous matrix-shaped blocks, each including rectangular cubes for modeling the oil flow in the formation. For an arbitrary set of oil concentrations and various formation materials, the response of the detectors for this model was studied. Taking into account the results corresponding to the traditional homogeneous mixture model for the formation, it was found that the deviations between the count rates for two models reach to about 10% and 22% for short spacing and far spacing detectors, respectively. The results also show that the slopes of the straight-line fits to the count rates, which is important for the evaluation of the density, deviate between about 73.3% and 53.8% for two simulated models. Investigating the effect of the presence of the drilling fluid on the count rate of the proposed model showed that for a given thickness of mudcake and the formation density, both detectors show approximately the same percentage of change in counting rate. However, these counts for the proposed model deviate from those of the mixture model between 5.1% and 28%. It can be concluded that defining a model for describing heterogeneities of a natural porous medium can effectively account for the prediction of density measurement in logging tools.

摘要

测井是一种通过钻孔在地下地层进行岩石物理测量的技术,以确定岩石和流体的物理性质。考虑到储层是流体可通过孔隙流动的复杂裂缝介质,需要详细研究并准确量化介质中石油的分布模型。为研究此效应,使用MCNPX代码对一种典型的包含Cs源和两个NaI探测器的伽马-伽马测井工具进行建模。介质填充有大量基质形状的块体,每个块体包含用于模拟地层中油流的矩形立方体。针对任意一组油浓度和各种地层材料,研究了该模型探测器的响应。考虑到与传统地层均匀混合模型对应的结果,发现对于短间距和远间距探测器,两种模型的计数率偏差分别达到约10%和22%。结果还表明,对计数率进行直线拟合的斜率(对密度评估很重要)在两种模拟模型之间偏差约为73.3%至53.8%。研究钻井液的存在对所提模型计数率的影响表明,对于给定的泥饼厚度和地层密度,两个探测器的计数率变化百分比大致相同。然而,所提模型的这些计数与混合模型的计数偏差在5.1%至28%之间。可以得出结论,定义一个描述天然多孔介质非均质性的模型可以有效预测测井工具中的密度测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/427b/7176707/f271a986cb98/41598_2020_63323_Fig1_HTML.jpg

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