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徐永福, Yongfu Xu
Computers and Geotechnics 31 (2004) 549-557,-0001,():
-1年11月30日
The hydraulic conductivity of unsaturated soils with constant volume is a function of the saturation degree or matric suction, and can be obtained based on currently available procedures. However, each procedure has its limitations and consequently cares should be taken in the selection of a proper procedure. Fractal approach seems to be a potentially useful tool to describe hierarchical systems and is suitable to model the structure and hydraulic properties of porous media. In this paper, the soil-water characteristic curve and hydraulic conductivity function of unsaturated soils were derived from the fractal model for the pore-size distribution, and were expressed by only two independently physical parameters, the fractal dimension and the air-entry value. The predictions of the proposed soil-water characteristic curve and unsaturated hydraulic conductivity were in good accord with the published experimental data. Comparisons between the experimental results and the predictions of both the fractal model and the van Genuchten- Mualem model were performed, and it was found that the predictions of the fractal model were better than that of the van G-M model.
Unsaturated soil, Hydraulic conductivity, Fractals, Pore-size distribution
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【期刊论文】Some factors controlling the adsorption of potassium ions on clayey soils
徐永福, Y.J. Du a, *, S. Hayashi a, Y.F. Xu b
Applied Clay Science 27 (2004) 209-213,-0001,():
-1年11月30日
The adsorption of contaminants is one of the key mechanisms governing the transport of contaminants in the clay liner at landfill sites. This study presents an investigation of some factors controlling the adsorption of potassium (K+) onto two soils, named Ariake clay and Akaboku soil. The KCl solution and multi-salt solution containing KCl, NaCl and CaCl2 were selected as the synthetic leachates. The results show that with the increase of the solid/solution ratio, the adsorbed amount of K+ decreased for both soils. This dependence of adsorption behavior on the solid/solution ratio was found more significant for the Ariake clay. Both soils arrived an equilibrium condition in short time less than the contact time prescribed by the ASTM and US EPA standard batch-type tests. It was observed that both soils adsorbed larger amount of K+ in the case of KCl solution condition than in the case of multi-salt condition.
Adsorption, Adsorption isotherm, Batch test, Ariake clay
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【期刊论文】Technical Note Earth reinforcement using soilbags
徐永福, Yongfu Xu a, *, Jian Huang b, Yanjun Du c, De'an Sun d
Geotextiles and Geomembranes 26 (2008) 279-289,-0001,():
-1年11月30日
This paper describes the method of earth reinforcement using soilbags and illustrates its application for case studies involving a pond and the expansive soil slope protection for a highway. The strength properties of soilbags were investigated using unconfined compression tests and bearing capacity tests on real soilbags containing either medium grained sands or gravels. The test results show that soilbags have high strength when subjected to an external load. This is primarily attributed to the mobilization of tensile forces in the bags. It is concluded that earth reinforcement using soilbags could substantially improve the bearing capacity of soft ground as well as minimizing deformation under working loads.
Bearing capacity, Earth reinforcement, Retaining wall, Soilbag, Unconfined compressive strength
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【期刊论文】Swelling characteristics of fractal-textured bentonite and its mixtures
徐永福, Y.F. Xu a, *, H. Matsuoka b, D.A. Sun b
Applied Clay Science 22 (2003) 197-209,-0001,():
-1年11月30日
Swelling deformation and swelling pressure tests of Tsukinuno bentonite and its mixtures with Toyoura sand were performed on a modified odometer. The swelling strain and swelling pressure of bentonite and its mixtures are dependent on the dry density, the increment of water content and the surface fractality of bentonite particle aggregates in voids. The water volume absorbed by bentonite is related to the surface fractal dimension (Ds) of bentonite. The correlation of the water volume to vertical overburden pressure (p) is obtained as Vw/Vm=KpDs 3 for Tsukinuno bentonite with fractal-textured surface. The maximum swelling strain is predicted according to the correlation of the water volume to vertical overburden pressure. The predictions of the maximum swelling strain are in satisfactory agreement with the experimental data. Furthermore, the good relationship between swelling strain and elapsed time is also proposed in this paper.
Swelling strain, Swelling pressure, Fractal, Fractal dimension, Bentonite, Bentonite-sand mixture
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【期刊论文】Fractal model for size effect on ice failure strength
徐永福, Yongfu Xu a, *, Jianping Xu b, Jianhua Wang a
Cold Regions Science and Technology 40 (2004) 135-144,-0001,():
-1年11月30日
A significant 'size effect' is observed in ice failure strength: the ice strength is not independent of ice fragment size, but decreases with increasing size. The fractal approach to the ice mechanics with a multiscale microstructure provides an elegant and unified explanation of the size effect on ice failure strength. Ice fragments are found to have a fractal size distribution, with a fractal dimension (D) close to 2.50 over a remarkably wide range of ice fragment size. The size effect on ice strength can be well predicted using the fractal dimension D=2.50 of the ice fragment size distribution.
Ice, Fragment, Size distribution, Size effect, Failure strength, Fractals, Fractal dimension
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