Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil
Thermal energy storage in compacted soils can be considered as a new economically efficient and environmentally friendly technology in geotechnical engineering. Compacted soils are usually unsaturated; therefore, reliable estimates and measurements of their thermal properties are important in the ef...
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doaj-831b65053a6245f18b0a829a0e95a5162021-04-02T16:16:39ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012050701110.1051/e3sconf/202020507011e3sconf_icegt2020_07011Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soilLahoori Mojdeh0Rosin-Paumier Sandrine1Jannot Yves2Boukelia AhmedMasrouri Farimah3LEMTA – CNRS UMR 7563, Université de Lorraine, Vandœuvre-lès-NancyLEMTA – CNRS UMR 7563, Université de Lorraine, Vandœuvre-lès-NancyLEMTA – CNRS UMR 7563, Université de Lorraine, Vandœuvre-lès-NancyLEMTA – CNRS UMR 7563, Université de Lorraine, Vandœuvre-lès-NancyThermal energy storage in compacted soils can be considered as a new economically efficient and environmentally friendly technology in geotechnical engineering. Compacted soils are usually unsaturated; therefore, reliable estimates and measurements of their thermal properties are important in the efficiency analysis of these structures. In this study, a method is used to estimate the thermal properties of an unsaturated compacted soil. Several temperature sensors were placed in a thermo-regulated metric scale container to monitor the imposed temperature variation in the range of the 20 to 50 °C. This imposed temperature variation reproduced the temperature variation in the thermal energy storages. An inverse analytical model based on a one-dimensional radial heat conduction equation is used to estimate the thermal diffusivity using the temperature variation between two temperature sensors. The volumetric heat capacity was measured using a calorimeter in the laboratory, enabling the estimation of the thermal conductivity of the compacted soil. Then, this estimated thermal conductivity was compared with the thermal conductivity values measured with two other methods (steady-state and transient-state method). The difference between them are discussed in terms of the sample heterogeneity, sample size, and measurement method.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/65/e3sconf_icegt2020_07011.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lahoori Mojdeh Rosin-Paumier Sandrine Jannot Yves Boukelia Ahmed Masrouri Farimah |
spellingShingle |
Lahoori Mojdeh Rosin-Paumier Sandrine Jannot Yves Boukelia Ahmed Masrouri Farimah Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil E3S Web of Conferences |
author_facet |
Lahoori Mojdeh Rosin-Paumier Sandrine Jannot Yves Boukelia Ahmed Masrouri Farimah |
author_sort |
Lahoori Mojdeh |
title |
Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil |
title_short |
Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil |
title_full |
Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil |
title_fullStr |
Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil |
title_full_unstemmed |
Thermal energy storage in embankments: Investigation of the thermal properties of an unsaturated compacted soil |
title_sort |
thermal energy storage in embankments: investigation of the thermal properties of an unsaturated compacted soil |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2020-01-01 |
description |
Thermal energy storage in compacted soils can be considered as a new economically efficient and environmentally friendly technology in geotechnical engineering. Compacted soils are usually unsaturated; therefore, reliable estimates and measurements of their thermal properties are important in the efficiency analysis of these structures. In this study, a method is used to estimate the thermal properties of an unsaturated compacted soil. Several temperature sensors were placed in a thermo-regulated metric scale container to monitor the imposed temperature variation in the range of the 20 to 50 °C. This imposed temperature variation reproduced the temperature variation in the thermal energy storages. An inverse analytical model based on a one-dimensional radial heat conduction equation is used to estimate the thermal diffusivity using the temperature variation between two temperature sensors. The volumetric heat capacity was measured using a calorimeter in the laboratory, enabling the estimation of the thermal conductivity of the compacted soil. Then, this estimated thermal conductivity was compared with the thermal conductivity values measured with two other methods (steady-state and transient-state method). The difference between them are discussed in terms of the sample heterogeneity, sample size, and measurement method. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/65/e3sconf_icegt2020_07011.pdf |
work_keys_str_mv |
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1721557282881273856 |