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An effective thermal conductivity model for unsaturated compacted bentonites with consideration of bimodal shape of pore size distribution 被引量:3

An effective thermal conductivity model for unsaturated compacted bentonites with consideration of bimodal shape of pore size distribution
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摘要 An effective thermal conductivity model was proposed for unsaturated compacted bentonites with consideration of the bimodal shape of pore size distribution curves. The pores of soils were grouped into two dominant pore size modes corresponding to the intra- and inter-particle pores, and were simulated with randomly distributed spheroidal inclusions of different aspect ratios. With the assumption of preferential invasion of the wetting fluid (water) into pores of smaller sizes and by virtue of the analyt- ical solution to the inhomogeneous inclusion problem in heat conduction, the model was developed using the Mori-Tanaka (MT), Ponte Castafieda-Willis (PCW) and self-consistent (SC) homogenization approaches for different considerations of the interactions between pores and the solid phase. The proposed model is functions of the thermal conductivities of the solid, liq- uid and gas phases, porosity, the degree of saturation, the aspect ratios of pores and/or soil particles, and the fraction of the smaller group of pores. The proposed model was validated against five sets of laboratory measurement data on the MX-80, FEBEX, KunigeI-V1 and GMZ01 bentonites, showing a good agreement between the model predictions and the laboratory measurements. The responses of the model with respect to the geometries of pores and solid particles were examined. Com- pared to series-parallel structural models, the proposed model may overall exhibit better performance if proper homogenization schemes are adopted, but as an advantage, the model has clearer physical mechanisms and a smaller number of parameters.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第2期369-380,共12页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.51179136 and 51222903)
关键词 thermal conductivity homogenization schemes compacted bentonite unsaturated soil pore size distribution three-phase media 有效热导率 压实膨润土 模型预测 孔径分布 几何形状 不饱和 双峰 土壤颗粒
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