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Methods of vacuum consolidation and their deformation analyses

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posted on 2024-11-15, 06:47 authored by Jin-Chun Chai, John Philip Carter, Martin Liu
Two methods, namely the air-tight sheet method and the vacuum-drain method (sheetless), are generally used to conduct vacuum consolidation in the field. The advantages and disadvantages of both methods and the techniques for preventing vacuum leakage through a middle sand layer in a deposit, as well as the method for maintaining vacuum pressure when large settlement occurs, have been described. Vacuum pressure is an isotropic consolidation pressure applied to a soil deposit, and the deformation induced is different from that induced by a surcharge (e.g. the weight of an embankment). Two typical case histories in Japan are presented and deformation analyses were conducted. In one case history the vacuum-drain method was used with vacuum pressure alone, and in the other a combination of embankment loading and vacuum pressure was applied employing the air-tight sheet method. It is shown that under vacuum pressure loading, the ground deformation (settlement and lateral displacement) can be calculated reliably using a method proposed previously. For the case involving a combination of vacuum pressure and embankment load, the settlements under the embankment centreline can be estimated reasonably assuming one-dimensional deformation conditions.

History

Citation

Chai, J., Carter, J. Philip. & Liu, M. D. (2014). Methods of vacuum consolidation and their deformation analyses. Proceedings of the ICE - Ground Improvement, 167 (1), 35-46.

Journal title

Proceedings of the Institution of Civil Engineers: Ground Improvement

Volume

167

Issue

1

Pagination

35-46

Language

English

RIS ID

87703

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