套管井地层密度测量新方法

Xinguang Wang, Dong Li, Lei Zhang, Feng Zhang, Wen-hao Wang, Huiping Gao, China Oilfield Services Limited, Xi 'an HuiNeng Electronic Equipment Co. Ltd
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引用次数: 1

摘要

密度测井是裸眼测井系列的一种基本测井方法。在套管井中,地层通常被视为一个圆柱形多层模型,包括井眼、套管、水泥和原始地层,与裸眼井相比,产生更复杂的测井响应。多项研究表明,在一定条件下,利用密度测井仪测量套管井地层密度是可行的,其中关键问题是确定套管厚度、水泥厚度和水泥密度。本研究提出了一种利用三探测器密度工具评估套管后地层密度的新方法。考虑到后向散射伽马容易受到套管后密度的影响,特别是当套管厚度较小时,采用设计的散射伽马能谱高低能窗计数比来计算套管厚度,提高了检测下限。在得到套管厚度后,将套管井的圆柱多层模型简化为由套管井眼、水泥和原始地层组成的圆柱三层模型。随后,借鉴电测井的测井几何因子G概念,推导出了中间层(水泥)厚度和外层(原始地层)密度的解析表达式。因此,可以独立计算水泥厚度和原始地层密度。为了证明该方法的可行性,在一组标定井中测量了实验数据。数据处理结果表明,所提出的分析模型与实验数据吻合较好。此外,根据实验数据对该方法的应用条件进行了讨论。最后,几个测井实例表明,在合适的套管和水泥条件下,用该方法计算的套管井地层密度与相应的裸眼密度吻合较好。
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A NOVEL METHOD FOR FORMATION DENSITY MEASUREMENT IN CASED WELLS
Density logging is a fundamental logging method of open-hole logging series. In cased wells, the formation is usually treated as a cylindrical multiple-layer model including borehole, casing pipe, cement, and original formation, producing more complicated logging response compared to open-hole wells. Several studies have indicated that it is feasible to measure formation density using a density logging tool in cased well under certain conditions, of which the key problem is to determine casing thickness, cement thickness and cement density. This study proposes a novel method to evaluate formation density behind casing using a three-detector density tool. Considering that the backscattered gamma is easily affected by the density behind the casing, especially when the casing thickness is small, a designed ratio of high and low energy window counts of the scattered gamma spectrum is used to calculate casing thickness, which improves the lower limit of the detection. After obtaining casing thickness, the cylindrical multiple-layer model of cased well can be simplified to a cylindrical three-layer model, consisting of cased borehole, cement, and the original formation. Subsequently, the analytical expressions of the thickness of the middle layer (cement) as well as the density of the outer layer (original formation) can be derived based on the logging geometric factor concept, G, which borrowing from electric logging. Consequently, the cement thickness and original formation density could be calculated independently. To demonstrate the feasibility of the proposed method, experimental data are measured in a group of calibration wells. The data processing results show that the proposed analytical model fit well with the experimental data. In addition, the application conditions of the novel method are discussed based on experimental data. Finally, several log examples illustrate that under suitable casing and cement conditions, the formation density calculated with the proposed method in cased borehole is in good agreement with the corresponding open-hole density.
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