A note on falling-head and rising-tail permeability tests on saturated soils in centrifuge

Author:

Lei G.H.11,Liu F.X.11,Xia S.W.11

Affiliation:

1. Key Laboratory of Geomechanics and Embankment Engineering of the Ministry of Education, Geotechnical Research Institute, Hohai University, Nanjing, Jiangsu 210024, China.

Abstract

The falling-head and rising-tail method for permeability test allows for both inflow and outflow rates to be conveniently measured. This helps to detect any possible swelling or consolidation of specimen during testing and to identify the continuity of flow of water through the specimen. It has been widely adopted to measure the hydraulic conductivity of saturated porous media of extremely low permeability, such as hydraulic barrier soil materials. Centrifuge permeameter test with this method has recently been devised to accelerate water flow and reduce the time needed for testing. The accompanying equation for calculating hydraulic conductivity is, however, found to be simplified because it was formulated by idealizing such a variable-head test as multiple segmental constant-head tests. In this paper, a new generalized equation is established based strictly on the variable head. Moreover, based on curve matching between the rates of flow into and out of the soil specimen, an approach is also proposed to identify the continuity state of flow. The data relevant to this state are extracted for performing the calculation of hydraulic conductivity. The practical application of the proposed equation and its associated approach is illustrated through a reanalysis of recently published experimental data in the literature.

Publisher

Canadian Science Publishing

Subject

Civil and Structural Engineering,Geotechnical Engineering and Engineering Geology

Reference39 articles.

1. Insight into Role of Clay-Fluid Molecular Interactions on Permeability and Consolidation Behavior of Na-Montmorillonite Swelling Clay

2. Measurement of permeability using a bench-top centrifuge

3. ASTM. 2008. Standard test method for determining unsaturated and saturated hydraulic conductivity in porous media by steady-state centrifugation (Withdrawn 2017). ASTM Standard D6527-00. ASTM International, West Conshohocken, Pa. 10.1520/D6527-00R08.

4. ASTM. 2015. Standard test method for measurement of hydraulic conductivity of porous material using a rigid-wall, compaction-mold permeameter. ASTM Standard D5856-15. ASTM International, West Conshohocken, Pa. 10.1520/D5856-15.

5. ASTM. 2016. Standard test methods for measurement of hydraulic conductivity of saturated porous materials using a flexible wall permeameter. ASTM Standard D5084-16a. ASTM International, West Conshohocken, Pa. 10.1520/D5084-16A.

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