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High Capacity Tensiometers: Performance and behaviours

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conference contribution
posted on 2025-05-11, 20:27 authored by Joao Mendes, Armin Jamali, Abdallah Najdi, David Encalada, Agostino W. Bruno, Pere C. Prat, Olivier BuzziOlivier Buzzi, Domenico Gallipoli, Alberto Ledesma, David Toll
High capacity tensiometers (HCT) allow the direct measurement of soil matric suction, and their major limitation is the occurrence of cavitation. In this paper HCT designs using different ceramic filters with varied air entry values (AEV), varied reservoir sizes, and different pressure transducers are assessed as to determine the impact that each component may have in the HCT performance. Moreover, the effectiveness of first saturation and resaturation processes is discussed in relation to the time required to prepare/recover HCTs. The results obtained with the different designs show that the measuring range is directly linked to the AEV of the ceramic filter and that the choice of materials used for the various components may affect the reliability of measurements in field installations if the thermal performance is not accounted for in the calibration procedure. The use of a 1hr high vacuum pre-stage followed by overnight water pressurisation at pressures equal or above the AEV of the ceramic filter was found to be the quickest process to fully saturate an HCT for the first time. While resaturation time for an HCT can be reduced to as little as a few minutes if the HCT is resaturated immediately after cavitation has occurred.

History

Source title

Proceedings of 8th International Conference on Unsaturated Soils (UNSAT 2023) [presented in E3S Web of Conferences, Vol. 382, No. 22001]

Name of conference

8th International Conference on Unsaturated Soils (UNSAT 2023)

Location

Milos, Greece

Start date

2023-05-02

End date

2023-05-05

Editors

Bardanis, M.

Publisher

EDP Sciences

Language

  • en, English

College/Research Centre

College of Engineering, Science and Environment

School

School of Engineering

Rights statement

© The Authors, published by EDP Sciences. This is an open access article distributed under the terms of the Creative Commons Attribution License 4.0 (http://creativecommons.org/licenses/by/4.0/).

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