首页 / 资料库 / 文献详情

Chemical reaction kinetics based models for describing evolution of one-dimensional expansion with time

ZOU Wei-lie 1, 2, YE Yun-xue 3, HAN Zhong 2

2020DOAJ (DOAJ: Directory of Open Access Journals)Engineering被引 1开放获取

出版方页面 →

摘要

Two models for describing the evolution of one-dimensional expansion of expansive soils with time are derived based on the second-order chemical reaction kinetic equation, namely, hyperbolic model and Logistic model. The former has two parameters which have clear physical meanings, while the latter has three parameters among which one has an unclear physical meaning. One-dimensional swelling tests on the specimens with different initial water contents and dry densities are conducted to obtain swelling strain-time curves, and the fitting effects using the two models are compared. The results show that both models can accurately describe the swelling strain-time curves. Moreover, the hyperbolic model can also be used to predict the expansion time-history curves of the specimens with different initial water contents and dry densities. The predicted curves have good consistency with the experimental data, and the parameter correction process is simple, which is convenient for engineering applications. The expansion time-history model deduced in this study has important theoretical significance for describing the evolution laws of volume change of expansive soils during the process of water immersion saturation.

引用本文(GB/T 7714)

ZOU Wei-lie 1, 2, YE Yun-xue 3, HAN Zhong 2. Chemical reaction kinetics based models for describing evolution of one-dimensional expansion with time[J]. DOAJ (DOAJ: Directory of Open Access Journals), 2020.

引文网络

参考文献与被引分析加载中…

DOI:https://doi.org/10.11779/cjge202004017

本站仅收录题录与摘要供学习参考,全文版权归属出版方;如有侵权请联系我们删除。