Anisotropic Brittleness Characterization and Analysis of VTI Media

IF 1.8 3区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Qiyu Yang, Jingye Li, Jinming Cui, Yongping Wang, Lei Han, Yuning Zhang
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引用次数: 0

Abstract

The brittleness index is a crucial parameter for evaluating the brittleness of subsurface reservoirs. Accurate brittleness determination optimizes fracture design and guides oil and gas extraction, especially in shale formations. Traditionally, the brittleness index assumes isotropy, which fails to capture the anisotropic nature of shale reservoirs and often leads to prediction errors. To mitigate this challenge, this study introduces a stiffness coefficient matrix specifically designed for anisotropic media and proposes a brittleness index equation tailored for transverse isotropic (VTI) media. Experimental results show that the proposed anisotropic brittleness index provides a more accurate assessment of shale reservoir brittleness than the conventional isotropic brittleness index. Ultimately, the anisotropic brittleness index is applied to field logging data, thereby validating the effectiveness of the method in distinguishing between reservoirs of high and low brittleness.

VTI介质各向异性脆性表征与分析
脆性指数是评价地下储层脆性的重要参数。精确的脆性测定可以优化裂缝设计,指导油气开采,尤其是在页岩地层中。传统上,脆性指数假设各向同性,这无法捕捉页岩储层的各向异性,往往导致预测误差。为了缓解这一挑战,本研究引入了专为各向异性介质设计的刚度系数矩阵,并提出了专为横向各向同性(VTI)介质设计的脆性指数方程。实验结果表明,所建立的各向异性脆性指数比传统的各向同性脆性指数能更准确地评价页岩储层的脆性。最后将各向异性脆性指数应用于现场测井资料,验证了该方法在区分高脆性和低脆性储层中的有效性。
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来源期刊
Geophysical Prospecting
Geophysical Prospecting 地学-地球化学与地球物理
CiteScore
4.90
自引率
11.50%
发文量
118
审稿时长
4.5 months
期刊介绍: Geophysical Prospecting publishes the best in primary research on the science of geophysics as it applies to the exploration, evaluation and extraction of earth resources. Drawing heavily on contributions from researchers in the oil and mineral exploration industries, the journal has a very practical slant. Although the journal provides a valuable forum for communication among workers in these fields, it is also ideally suited to researchers in academic geophysics.
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