Javascript must be enabled to continue!
Pore Structure and Fractal Characteristics of Low-Maturity Shales in the Upper-Fourth Shahejie Formation, Minfeng Sag
View through CrossRef
An integrated analysis incorporating total organic carbon (TOC) content measurement, X-ray diffraction (XRD), scanning electron microscopy (SEM), and gas adsorption experiments was performed on core samples from Well FY1-4 of the upper-fourth Shahejie Formation (Es4) in the Minfeng Sag. To address the lack of systematic research on the pore and fractal characteristics of organic-rich low-maturity shales in the Minfeng Sag (against the preponderance of studies on high-maturity shales), this study characterized the lithofacies, reservoir space and pore fractal features of the target low-maturity shale interval and clarified the sedimentary controls on lithofacies and key factors regulating pore fractal heterogeneity. The results reveal that the shale in the Es4 of the study area exhibits low thermal maturity, with six distinct lithofacies identified. Organic-rich laminated calcareous shale lithofacies (RL-1) and organic-rich laminated calcareous/argillaceous mixed shale lithofacies (RL-2) represent the most favorable lithofacies, which are dominated by large mesopores and macropores. Their reservoir spaces were primarily composed of intergranular pores, intragranular pores, and organic pores, whereas the other lithofacies are dominated by small mesopores. The pore surface fractal dimension (D) was calculated using the Frenkel–Halsey–Hill (FHH) model based on low-temperature N2 adsorption (LTNA) data. The meso-macropore system shows higher heterogeneity than the micropore system (D2 > D1). Both D1 and D2 exhibit a weak negative correlation with TOC and carbonate content and a positive correlation with clay content. In the initial depositional stage of the Es4, the arid climate, weak terrigenous input, shallow lake depth, and high salinity resulted in the strongly reducing saline depositional environment with relatively low organic matter enrichment. As the climate became progressively humid in the middle and late stages, hydrodynamic conditions intensified, leading to a lithofacies transition from mixed shales to argillaceous calcareous shales. Increased TOC and carbonate contents reduce the pore fractal dimension of shale. Smaller fractal dimensions directly indicate a simple pore structure and regular pore surface in the shale oil reservoir of the Minfeng Sag, where reservoir space is dominated by large pores such as intercrystalline pores and dissolved pores. Such pore characteristics are more favorable for the enrichment of shale oil.
Title: Pore Structure and Fractal Characteristics of Low-Maturity Shales in the Upper-Fourth Shahejie Formation, Minfeng Sag
Description:
An integrated analysis incorporating total organic carbon (TOC) content measurement, X-ray diffraction (XRD), scanning electron microscopy (SEM), and gas adsorption experiments was performed on core samples from Well FY1-4 of the upper-fourth Shahejie Formation (Es4) in the Minfeng Sag.
To address the lack of systematic research on the pore and fractal characteristics of organic-rich low-maturity shales in the Minfeng Sag (against the preponderance of studies on high-maturity shales), this study characterized the lithofacies, reservoir space and pore fractal features of the target low-maturity shale interval and clarified the sedimentary controls on lithofacies and key factors regulating pore fractal heterogeneity.
The results reveal that the shale in the Es4 of the study area exhibits low thermal maturity, with six distinct lithofacies identified.
Organic-rich laminated calcareous shale lithofacies (RL-1) and organic-rich laminated calcareous/argillaceous mixed shale lithofacies (RL-2) represent the most favorable lithofacies, which are dominated by large mesopores and macropores.
Their reservoir spaces were primarily composed of intergranular pores, intragranular pores, and organic pores, whereas the other lithofacies are dominated by small mesopores.
The pore surface fractal dimension (D) was calculated using the Frenkel–Halsey–Hill (FHH) model based on low-temperature N2 adsorption (LTNA) data.
The meso-macropore system shows higher heterogeneity than the micropore system (D2 > D1).
Both D1 and D2 exhibit a weak negative correlation with TOC and carbonate content and a positive correlation with clay content.
In the initial depositional stage of the Es4, the arid climate, weak terrigenous input, shallow lake depth, and high salinity resulted in the strongly reducing saline depositional environment with relatively low organic matter enrichment.
As the climate became progressively humid in the middle and late stages, hydrodynamic conditions intensified, leading to a lithofacies transition from mixed shales to argillaceous calcareous shales.
Increased TOC and carbonate contents reduce the pore fractal dimension of shale.
Smaller fractal dimensions directly indicate a simple pore structure and regular pore surface in the shale oil reservoir of the Minfeng Sag, where reservoir space is dominated by large pores such as intercrystalline pores and dissolved pores.
Such pore characteristics are more favorable for the enrichment of shale oil.
Related Results
Institutional Quality Matter and Vietnamese Corporate Debt Maturity
Institutional Quality Matter and Vietnamese Corporate Debt Maturity
This article studies whether firm-level and country-level factors affect to the corporation's debt maturity in case of Vietnam or not. The paper adopts the balance panel data of 26...
Fractal Dimension Analysis of Pore Throat Structure in Tight Sandstone Reservoirs of Huagang Formation: Jiaxing Area of East China Sea Basin
Fractal Dimension Analysis of Pore Throat Structure in Tight Sandstone Reservoirs of Huagang Formation: Jiaxing Area of East China Sea Basin
The reservoir quality of tight sandstone is usually affected by pore throat structures, and understanding pore throat structures and their fractal characteristics is crucial for th...
Thermophysical Properties Of Devonian Shales
Thermophysical Properties Of Devonian Shales
Abstract
A detailed study of the thermophysical properties of Devonian shales from the central and eastern United States has been carried out. The properties enco...
Fluid Inclusion Constrained Multiple Petroleum Chargings in the Lithologic Reservoirs of the Late Eocene Shahejie Formation in the Minfeng Sag, Bohai Bay Basin, East China
Fluid Inclusion Constrained Multiple Petroleum Chargings in the Lithologic Reservoirs of the Late Eocene Shahejie Formation in the Minfeng Sag, Bohai Bay Basin, East China
The fluid inclusion technique was utilized to reveal the petroleum charging events in the lithologic reservoirs embraced in the Late Eocene Shahejie Formation of the Minfeng sag, B...
Effects of Different Voltage Sag Types on Induction Motor
Effects of Different Voltage Sag Types on Induction Motor
This paper analyzes effects caused by voltage sag types A, B, C and D on induction motor based on experimental test. The effect can be investigated in term the current peaks and sp...
Quantitative Description for the Heterogeneity of Pore Structure by Using Mercury Capillary Pressure Curves
Quantitative Description for the Heterogeneity of Pore Structure by Using Mercury Capillary Pressure Curves
ABSTRACT
Pore structure of reservoir rock is one of the most important factors to affect microscopic oil and water flowing in porous media and the development effici...
Dynamic Rigid Fractal Spacetime Manifold Theory
Dynamic Rigid Fractal Spacetime Manifold Theory
This paper proposes an innovative framework, the Dynamic Rigid Fractal Spacetime Manifold Theory (DRFSMT), which integrates fractal and noncommutative algebra to provide a unified ...
Validation of a Modified Normalized Particle Swarm Optimization Model for Characterizing Pore Structure in Permo–Triassic Khuff Carbonate Reservoirs, Central Saudi Arabia
Validation of a Modified Normalized Particle Swarm Optimization Model for Characterizing Pore Structure in Permo–Triassic Khuff Carbonate Reservoirs, Central Saudi Arabia
Abstract
Carbonate reservoirs commonly exhibit highly heterogeneous pore systems that exert a major control on reservoir quality and fluid-flow behavior. Quantitati...

