Research on the microstructure control mechanism of the stagnant water effect at the loess-mudstone interface under seepage conditions

Published: 21 July 2025| Version 1 | DOI: 10.17632/6n2xbm72b4.1
Contributor:
Zekun Li

Description

Our research data includes the following: Detailed information of the primary peak in the T2 spectrum.Variations of different categories of pores at the interface of samples after seepage.Frequency distributions of the pore numbers at the interface of samples after seepage.The circularity and directional characteristics of pores at the interface of samples after seepage.

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Categories

Nuclear Magnetic Resonance, Loess, Scanning Electron Microscopy, Landslide

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