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基于Comsol Multiphysics的半浸泡非饱和水泥基材料水分输运数值模型研究

张梦媛 丁龙亭 王选仓 谢金生 王孜健

重庆大学学报2024,Vol.47Issue(12):45-56,12.
重庆大学学报2024,Vol.47Issue(12):45-56,12.DOI:10.11835/j.issn.1000.582X.2024.12.005

基于Comsol Multiphysics的半浸泡非饱和水泥基材料水分输运数值模型研究

Numerical model of water transport in partially-immersed unsaturated cement-based materials using Comsol Multiphysics

张梦媛 1丁龙亭 1王选仓 2谢金生 2王孜健1

作者信息

  • 1. 山东高速集团有限公司 创新研究院,济南 250000
  • 2. 长安大学 公路学院,西安 710064
  • 折叠

摘要

Abstract

Saline soils are widely distributed in the desert regions of western China,where road base deformation due to soluble sulfate poses a significant issue.Using multiphase flow theory,this study conducts a numerical simulation of water transport in unsaturated cement-based mixtures under infiltration conditions with Comsol Multiphysics software.The model considers capillary pressure as the driving force for water phase transport and saturated vapor pressure as the driver for both water and gas phase transport.Dynamic and evaporation governing equations for the water and wet air phases in unsaturated porous media are derived,forming the basis of a water transport model for partially-immersed unsaturated mixtures that accounts for water and wet air evaporation.Capillary absorption characteristics of three types of cement-stabilized materials are obtained through water transport testing,and model accuracy is verified against experimental results.Findings show that the capillary absorption coefficient is the highest for XM(0.09 g/cm2),followed by GK(0.085 g/cm2),and lowest for GM.In unsaturated porous media,fluid movement in pores is mainly driven by capillary water transport in the early stages,with later stages dominated by convective effects due to vapor pressure differences.These results highlight the critical influence of water capillary and evaporation on soluble salt transport in partially-immersed unsaturated cement-based mixtures.This research advances understanding of water transport in unsaturated media and provides a foundation for exploring water-salt transport in such materials and establishing numerical models.

关键词

土木工程/水泥基材料/非饱和介质/水分传输/数值模拟

Key words

civil engineering/cement-based material/unsaturated porous media/water transport/numerical modeling

分类

交通工程

引用本文复制引用

张梦媛,丁龙亭,王选仓,谢金生,王孜健..基于Comsol Multiphysics的半浸泡非饱和水泥基材料水分输运数值模型研究[J].重庆大学学报,2024,47(12):45-56,12.

基金项目

交通运输部交通运输行业重点科技项目(2018-MS1-025) (2018-MS1-025)

新疆交通运输厅科技项目(2019-ZD1-009). Supported by Key Science and Technology Project of Transport Industry of Ministry of Transport(2018-MS1-025),and the Science and Technology Project of Xinjiang Transportation Department(2019-ZD1-009). (2019-ZD1-009)

重庆大学学报

OA北大核心CSTPCD

1000-582X

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