Effect of Porosity on Soil-Water Retention Curves: Theoretical and Experimental Aspects
Autor: | Fuguo Tong, Long Yan, Shuang Hao, Chang Liu, Hongbo Zhou |
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Rok vydání: | 2020 |
Předmět: |
QE1-996.5
Materials science Article Subject Isotropy 0211 other engineering and technologies Geology Soil science 02 engineering and technology 010502 geochemistry & geophysics 01 natural sciences Loam Soil water Bentonite General Earth and Planetary Sciences Porous medium Porosity Saturation (chemistry) 021101 geological & geomatics engineering 0105 earth and related environmental sciences Test data |
Zdroj: | Geofluids, Vol 2020 (2020) |
ISSN: | 1468-8123 1468-8115 |
DOI: | 10.1155/2020/6671479 |
Popis: | Porosity change is a common characteristic of natural soils in fluid-solid interaction problems, which can lead to an obvious change of the soil-water retention curve (SWRC). The influence of porosity on soil water retention phenomena is investigated by a theoretical model and an experimental test in this study. A model expressing the change in suction with porosity and effective saturation is put forward theoretically. The model is based on an idealization of three-phase porous materials, the pore structures of which are homogeneous and isotropic. It accounts for the porosity effect on soil water retention, using four parameters with clear physical meanings. The presented model can obtain the SWRC at any porosity, which will reduce the test number required in characterizing the hydraulic behavior of soil. A laboratory experiment for loamy sand with different porosities is performed. The test results show that suction has a significant variation with changes in porosity and decreases with the increase of porosity. The formulation is verified by both the test data and the literature data for FEBEX bentonite and Boom clay. The very good agreements between measured and predicted results show that the SWRC model is reliable and feasible for various soils. |
Databáze: | OpenAIRE |
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