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SPE 125380 Development of Generalized Porosity-Permeability Transforms by Hydraulic Units for Carbonate Oil Reservoirs in Saudi Arabia

机译:SPE 125380沙特阿拉伯碳酸盐油藏液压装置的透明孔隙率渗透性变换的发展

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There are several types of porosity-permeability transforms to determine permeability from well log-derived porosity in uncored oil and gas wells. Widely used typical transforms, either by geologic zones or by facies, do not provide satisfactory permeability to be distributed in reservoir simulation models. Hydraulic Unit (HU), which is a technique of rock typing of reservoir, provides far superior transforms than typical transforms. In this work, available routine core data, from major carbonate oil reservoirs located in eight different oil fields of the Kingdom of Saudi Arabia, are assembled to develop improved generalized porosity-permeability transforms by Hydraulic Units (HU). Improved transforms by HUs were developed for major carbonate oil reservoirs in eight different oil fields. Correlation accuracy (R~2) of each transform by HU was very good (>0.9). Then all data from eight different fields were combined to develop generalized transforms by HU technique. This technique provided excellent transforms for various HUs regardless of rock fabrics--either limestone or dolomite. Developed generalized transforms by HUs were tested for their accuracies on acquired core data in two wells, completed in the same major carbonate reservoir, but in two different oil fields. Applicability of generalized transforms was also tested with the core data from a different secondary carbonate reservoir. Calculated permeability by HUs matched very well with the tested core data which enhanced the reliability of developed generalized transforms. Similarly, generalized vertical permeability transforms by HUs were developed for the same major carbonate reservoirs in eight fields. Calculated vertical permeability by HUs matched very well with core data as well. Then vertical to horizontal permeability ratios (k_V/k_H) by HUs were calculated using both generalized transforms for vertical and horizontal permeability. The k_V/k_H ratios for most of the HUs are found to be almost one under the laboratory condition.
机译:有几种类型的孔隙率 - 渗透性转化,以确定未穿过油气孔中的良好原木源孔隙的渗透率。通过地质区域或相片的广泛使用典型的变换,不能提供令人满意的渗透性,以分布在储层模拟模型中。液压单元(HU),是一种岩石挤压液的技术,提供了比典型变换更优越的变换。在这项工作中,可用的常规核心数据来自位于沙特阿拉伯王国的八种不同油田的主要碳酸盐油藏,通过液压单元(胡)开发出改善的广义孔隙率渗透性变换。对于八种不同的油田的主要碳酸盐油藏,开发了HUS的改进变换。胡锦涛的每个变换的相关精度(R〜2)非常好(> 0.9)。然后将来自八个不同字段的所有数据组合以通过HU技术开发广义变换。这种技术为各种SU提供了出色的变换,无论岩石织物如何 - 无岩石或白云岩。 SUS开发的广义变换进行了两种井中获得的核心数据的准确性,在同一主要碳酸盐储层中完成,但在两个不同的油田中。广泛转化的适用性也用来自不同的二级碳酸盐储层的核心数据进行了测试。使用HUS的计算渗透率非常良好地与测试的核心数据相匹配,这增加了开发的广义变换的可靠性。类似地,对于八个领域的相同主要碳酸盐储层开发了HUS的广义垂直渗透性变换。使用HUS的垂直渗透率与核心数据相匹配。然后使用HUS垂直于水平渗透率(K_V / K_H),使用垂直和水平渗透性的普遍转化来计算。大多数HUS的K_V / K_H比率几乎是实验室条件的一个。

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