Gassmann模型和修正Hashin-Shtrikman-Walpole模型在尼日尔三角洲Jxt油田地面沉降敏感性研究中的应用

Chukwudi Idowu, B. Ojo
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摘要

本文研究了尼日尔三角洲陆上“JXT”油田在油气开采后对地面沉降的敏感性。本研究利用了现场两口井的测井资料,采用Gassmann模型和改进的Hashin-Shtrikman-Walpole模型进行压缩性分析。Gassmann模型的结果范围为0.06GPa-1至0.13GPa-1,而改进的Hashin-Shtrikman-Walpole可压缩性界限的结果范围为0.04GPa-1至3GPa-1。为了进一步评价该区域对地面沉降的敏感性,对一些重要的弹性参数进行了估计。结果表明:杨氏模量为20.5 ~ 27.5 gpa,体积模量为21.3 ~ 25.3 gpa,剪切模量为8.01 ~ 11.2 gpa,泊松比为0.23 ~ 0.28。总的来说,这些结果表明研究区不容易受到地面沉降的影响,并且几乎没有可能危害油气生产的洪水和淹没风险
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Gassmann's Model and the Modified Hashin-Shtrikman-Walpole Model in Land Subsidence Susceptibility Studies in the Jxt Field, Niger Delta
This paper investigates the susceptibility of the 'JXT' field, onshore Niger Delta to ground subsidence as an after effect of oil and gas production. Logs from two wells in the field were utilized for this study, Gassmann's model and the modified Hashin-Shtrikman-Walpole model for compressibility analysis were adopted. The results from Gassmann's model range from 0.06GPa-1 to 0.13GPa-1, while results from the modified Hashin-Shtrikman-Walpole bounds for compressibility range from 0.04GPa-1 to 3GPa-1. To further evaluate the susceptibility of the field to ground subsidence, some important elastic parameters were estimated. Results show young modulus (20.5-27.5GPa), bulk modulus (21.3-25.3GPa), shear modulus (8.01-11.2GPa), and Poisson ratio (0.23-0.28). Generally, these results indicate that the study area is less susceptible to ground subsidence and there is little risk of flooding and submergence which can be hazardous to oil and gas production
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