关于Gassmann方程数值验证讨论的答复(Yury Alkhimenkov, 2023,地球物理,88,no. 5)。莱昂·汤姆森(Leon Thomsen)著

IF 3 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Geophysics Pub Date : 2023-11-13 DOI:10.1190/geo2023-0678.1
Yury Alkhimenkov
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引用次数: 0

摘要

高斯曼方程在几十年前就为人所知,并在地球物理学中得到了广泛的应用。如果在推导过程中使用的所有假设都得到满足,这些方程就被认为是精确的。然而,最近的一项理论研究声称,加斯曼方程包含一个错误。在那之后不久,我对一个简单的孔隙几何结构进行了三维数值计算,以验证Gassmann方程的有效性。这种孔隙结构比真实岩石中的孔隙结构简单,但具有随意性。此外,所采用的孔隙几何结构不包含任何特殊的特征(在所有可能的几何结构中),使其与Gassmann方程一致。在最近的其他研究中,我还对其他几种更复杂的孔隙几何形状进行了数值计算,以支持Gassmann方程的有效性。为了进一步支持这些方程的有效性,我在这里提供了一个使用更真实的孔隙空间几何形状的更多收敛研究。考虑到有几项研究使用不同的方法重新推导了Gassmann方程,并对不同的孔隙几何形状进行了数值研究,可以得出结论,如果Gassmann方程的假设得到满足,则可以毫无顾虑地将其用于地球物理学。提供了MATLAB例程来重现所呈现的结果。
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Reply to discussion on numerical validation of Gassmann’s equations (Yury Alkhimenkov, 2023, Geophysics, 88, no. 4, A25–A29) by Leon Thomsen
Gassmann’s equations have been known for several decades and are widely used in geophysics. These equations are treated as exact if all the assumptions used in their derivation are fulfilled. However, a recent theoretical study claimed that Gassmann’s equations contain an error. Shortly after that, I performed a three-dimensional numerical calculation on a simple pore geometry that verifies the validity of Gassmann’s equations. This pore geometry was simpler than those in real rocks but arbitrary. Furthermore, the employed pore geometry did not contain any special features (among all possible geometries) that were tailored to make it consistent with Gassmann’s equations. In other recent studies, I also performed numerical calculations on several other more complex pore geometries that supported the validity of Gassmann’s equations. To further support the validity of these equations, I provide here one more convergence study using a more realistic geometry of the pore space. Given that there are several studies that rederive Gassmann’s equations using different methods and numerical studies that verify them for different pore geometries, it can be concluded that Gassmann’s equations can be used in geophysics without concern if their assumptions are fulfilled. MATLAB routines to reproduce the presented results are provided.
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来源期刊
Geophysics
Geophysics 地学-地球化学与地球物理
CiteScore
6.90
自引率
18.20%
发文量
354
审稿时长
3 months
期刊介绍: Geophysics, published by the Society of Exploration Geophysicists since 1936, is an archival journal encompassing all aspects of research, exploration, and education in applied geophysics. Geophysics articles, generally more than 275 per year in six issues, cover the entire spectrum of geophysical methods, including seismology, potential fields, electromagnetics, and borehole measurements. Geophysics, a bimonthly, provides theoretical and mathematical tools needed to reproduce depicted work, encouraging further development and research. Geophysics papers, drawn from industry and academia, undergo a rigorous peer-review process to validate the described methods and conclusions and ensure the highest editorial and production quality. Geophysics editors strongly encourage the use of real data, including actual case histories, to highlight current technology and tutorials to stimulate ideas. Some issues feature a section of solicited papers on a particular subject of current interest. Recent special sections focused on seismic anisotropy, subsalt exploration and development, and microseismic monitoring. The PDF format of each Geophysics paper is the official version of record.
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