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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Characterization of well logs using K-mean cluster analysis
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Characterization of well logs using K-mean cluster analysis

机译:使用K均值聚类分析表征测井

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The identification process of different lithologies, hydrocarbons, and water-saturated zones in oil and gas industries involves petrophysical studies that are carried out by geoscientists using different software packages. This study aims to propose a method by integrating mean cluster analysis and well logs to identify dominant lithologies, pore fluids, and fluids contact. For this purpose, initially, K-mean cluster analysis is applied to density log and P-wave velocity data of three wells in order to group them into different clusters. Based on centroids of each cluster, different lithologies have been identified. The density log equation has been utilized to compute the porosity of each cluster, and the mean of each density log cluster is used as matrix density. Next, sonic log equation has been inverted to compute the fluid velocity and the mean of each P-wave velocity cluster is used as matrix velocity. For the fluid density, sonic and density log equations are jointly inverted to compute the fluid velocity of each cluster. The fluid bulk modulus and acoustic impedance are computed using fluid density and velocity. Based on the results of K-mean cluster analysis, different lithologies (shale, sandstone, and limestone) have been recognized successfully. In well-1, hydrocarbon and water-saturated zones are successfully identified and fluids contact has been established in the zone of interest. However, well-2 and well-3 did not show any indications of the presence of hydrocarbon in the respective zones.
机译:石油和天然气工业中不同岩性,碳氢化合物和水饱和区的识别过程涉及岩石物理学研究,这是由地球学家使用不同的软件包进行的。这项研究旨在通过整合均值聚类分析和测井记录来确定主要岩性,孔隙流体和流体接触的方法,提出一种方法。为此,首先将K均值聚类分析应用于三个井的密度测井和P波速度数据,以便将它们分组为不同的聚类。基于每个簇的质心,已经确定了不同的岩性。密度对数方程已被用于计算每个簇的孔隙率,并且每个密度对数簇的平均值被用作基质密度。接下来,将声波测井方程反演以计算流体速度,并将每个P波速度簇的平均值用作矩阵速度。对于流体密度,将声波方程和密度对数方程式联合反演以计算每个簇的流体速度。使用流体密度和速度来计算流体体积模量和声阻抗。根据K均值聚类分析的结果,已成功识别出不同的岩性(页岩,砂岩和石灰岩)。在1井中,成功识别出了碳氢化合物和水饱和区,并在目标区建立了流体接触。但是,第2井和第3井未显示任何在各个区域中存在碳氢化合物的迹象。

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