Pore Structure Characteristics of Vegetated Concrete and Their Influence on Physical Properties
Fazhi Huo, Xinjun Yan, Jiaqi Liu, Peiyuan Zhuang

TL;DR
This study uses CT scanning and image analysis to understand how the pore structure of vegetated concrete affects its strength and permeability.
Contribution
The study introduces a novel combination of 3D reconstruction and fractal analysis to quantify the relationship between pore structure and material properties in vegetated concrete.
Findings
Aggregate size and porosity strongly influence compressive strength and water permeability but not pH.
3D porosity from CT scanning aligns closely with target design values, with minimal deviation from 2D measurements.
Fractal dimension increases with porosity and pore connectivity, showing a strong correlation with aggregate size.
Abstract
In this study, CT scanning technology was combined with ImageJ 1.54r and Avizo 3D 2022 professional image analysis software to quantify porosity. The aim was to reveal the intrinsic correlation between the pore structure characteristics and the macroscopic properties of vegetated concrete. A combination of 3D reconstruction, fractal analysis and multi-parameter regression modelling techniques was utilised to quantify the association between pore parameters and material properties. The mechanistic role of pore structure in regulating the strength–permeability trade-off relationship was elucidated. The results show that: (1) aggregate particle size and porosity are significantly negatively correlated with the compressive strength of vegetated concrete and strongly positively correlated with the water permeability coefficient, while the effects of both of them on the pH value of the…
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Taxonomy
TopicsUrban Stormwater Management Solutions · Smart Materials for Construction · Hygrothermal properties of building materials
