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May 24, 2026SPE Journal

The Effect of Solid-Liquid Interfacial Interactions on Shale Oil Flow in the Micro-Nano Scale Porous Media

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Authors

CLChangran LvYYYongfei YangQZQi Zhang

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Overview

Randomized trial reports the effects of solid-liquid interactions on shale oil flow in porous media, implying improved resource extraction techniques.

Key Points

  • This research aims to understand how solid-liquid interfacial interactions affect the flow of shale oil in micro-nano scale porous media.
  • Constructed digital core models using Markov Chain-Monte Carlo method and clustering analysis.
  • Simulated flow using direct numerical simulation (DNS) with customized boundary conditions.
  • Analyzed the effects of different factors such as slip lengths, adsorption layer thicknesses, and organic pore volume fraction (OPVF).
  • The simulation showed that variations in slip lengths significantly influence shale oil flow capacity.
  • Results indicated that thicker adsorption layers reduce flow efficiency due to increased resistance.
  • Different pore types and associated viscosity models lead to varied flow rates across the digital core models.

Cite This Study

Lv et al. (2026) studied this question.

synapsesocial.com/papers/6a12969d48a0ea166567385fhttps://doi.org/10.2118/233766-pa
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Also Consider

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  1. 1A nano-micro-continuum framework for liquid flow in multicomponent porous media: Impact of microporosity and microscale effects2026
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  4. 4Micro- and Nanoscale Flow Mechanisms in Shale Oil: A Fluid–Solid Coupling Model Integrating Adsorption, Slip, and Stress Sensitivity2026
  5. 5Interfacial phenomena in shale reservoirs: Molecular insights into adsorption, wettability, and nanoconfined flow2026 · 3 citations