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考虑热效应的污染物在土中扩散、渗透和固结耦合模型
引用本文:田改垒,张志红.考虑热效应的污染物在土中扩散、渗透和固结耦合模型[J].岩土工程学报,2022,44(2):278-287.
作者姓名:田改垒  张志红
作者单位:北京工业大学城市与工程安全减灾教育部重点实验室
基金项目:国家自然科学基金面上项目(51678012)。
摘    要:为探究温度对污染物运移进程的影响,建立了考虑热效应的污染物在土中扩散、渗透和固结耦合模型,该模型不仅能够体现污染物运移过程中土体物理特性及输运性质的动态变化,同时实现了扩散、渗透和固结机制的耦合.在验证模型有效性的基础上,分析了热扩散、热渗透、热固结及其综合效应对污染物运移规律的影响.结果 表明:热扩散、热渗透能够显著...

关 键 词:热扩散  热渗透  热固结  污染物运移

Coupled model for contaminant diffusion,osmosis and consolidation in soil considering thermal effects
TIAN Gai-lei,ZHANG Zhi-hong.Coupled model for contaminant diffusion,osmosis and consolidation in soil considering thermal effects[J].Chinese Journal of Geotechnical Engineering,2022,44(2):278-287.
Authors:TIAN Gai-lei  ZHANG Zhi-hong
Affiliation:The Key Laboratory of Urban Security and Disaster Engineering, Ministry of Education, Beijing University of Technology, Beijing 100124, China
Abstract:To explore the influences of temperature on pollutant transport,a coupled model for contaminant diffusion in soils,osmosis and consolidation considering the thermal effects is proposed to reflect the dynamic changes of physical properties of soils and transport properties in the process of pollutant transport and realize the coupling of diffusion,osmosis and consolidation.On the basis of verifying the validity of the model,the effects of thermal diffusion,thermo-osmosis,thermal consolidation and their combined effect on pollutant transport are analyzed.The simulated results show that the thermal diffusion and thermo-osmosis can accelerate contaminant transport,and with the increase of Soret coefficient and thermal permeability,the thermal diffusion and thermo-osmosis effects enhance.However,the thermal consolidation can slow down the pollutant transport rate,but with the increase of expansion coefficient of soils,the accumulation concentration of pollutant at the bottom of clay layer has little change.When the temperature difference is 40 K,the breakthrough time with considering the combined effects of thermal diffusion,thermo-osmosis and thermal consolidation can be shortened by 53.97 years compared with the results without considering the thermal effects.
Keywords:thermal diffusion  thermo-osmosis  thermal consolidation  contaminant transport
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