Numerical Simulation of Moisture Diffusion in the Microstructure of Asphalt Mixtures

Author:

Tu Chongzhi12,Luo Rong3,Huang Tingting3

Affiliation:

1. School of Civil Engineering, Chongqing Jiaotong University, No.66, Xuefu Road, Nan’an District, Chongqing 400074, China

2. Center for High-Performance Materials Research and Development, Gansu Province Transportation Planning, Survery & Designing Institute Co., Ltd., 1685 Yanbei Road, Lanzhou 70030, China

3. Hubei Highway Engineering Research Center, School of Transportation and Logistics Engineering, Wuhan University of Technology, 1178 Heping Avenue, Wuhan 430063, China

Abstract

Laboratory tests were carried out in accordance with ASTM C664-10(2020) to measure diffusion parameters in an asphalt mixture. These diffusion parameters are effective measures for use in asphalt mixtures. However, the tests could not provide detailed images of the water vapour distribution in the asphalt mixture. To solve this problem, this study provides a method for establishing a numerical model of moisture diffusion in an asphalt mixture, and gives a more detailed picture of the water vapour movement inside the asphalt mixture. Through numerical simulation results obtained under different external conditions, it was demonstrated that water molecules were mainly concentrated in medium III after 100 days of diffusion. After 1000 days of diffusion, the water molecules gradually penetrated the asphalt film in the aggregate particles. Additionally, the water vapour concentrations in the asphalt mixture varied significantly from spot to spot, and various concentration gradients were formed at different locations. These findings revealed that water vapour concentrations in an asphalt mixture vary significantly from spot to spot, forming various concentration gradients at different locations. These findings will be helpful in revealing the mechanism of water damage caused by moisture in asphalt mixtures.

Funder

Gansu Provincial Department of Science and Technology

Publisher

MDPI AG

Subject

General Materials Science

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