Geotechnical Behaviour of Frozen Mine Backfills

This thesis presents the results of an investigation of factors which influence the geotechnical properties of frozen mine backfill (FMB). FMB has extensive application potential for mining in permafrost areas. The uniaxial compressive strength (UCS) of hardened backfill is often used to evaluate mi...

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Main Author: Han, Fa Sen
Other Authors: Fall, Mamadou
Format: Thesis
Language:English
Published: Université d'Ottawa / University of Ottawa 2011
Subjects:
Online Access:http://hdl.handle.net/10393/20250
https://doi.org/10.20381/ruor-4843
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author Han, Fa Sen
author2 Fall, Mamadou
author_facet Han, Fa Sen
author_sort Han, Fa Sen
collection uO Research (University of Ottawa - uOttawa)
description This thesis presents the results of an investigation of factors which influence the geotechnical properties of frozen mine backfill (FMB). FMB has extensive application potential for mining in permafrost areas. The uniaxial compressive strength (UCS) of hardened backfill is often used to evaluate mine backfill stability. However, the deformation behaviour and stiffness of the FMB are also key design properties of interest. In this thesis, uniaxial compressive tests were conducted on FTB and FCPB samples. Information about the geotechnical properties of FMB is obtained. The effects of FMB mix components and vertical compression pressure on the geotechnical properties of FMB are discussed and summarized. An optimum total water content of 25%-35% is found in which the strength and the modulus of elasticity of the FTB are 1.4-3.2 MPa and 35-58 MPa, respectively. It is observed that a small amount (3-6%) of cement can significantly change the geotechnical properties of FTB.
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spelling ftunivottawa:oai:ruor.uottawa.ca:10393/20250 2025-01-17T00:16:29+00:00 Geotechnical Behaviour of Frozen Mine Backfills Han, Fa Sen Fall, Mamadou 2011 application/pdf http://hdl.handle.net/10393/20250 https://doi.org/10.20381/ruor-4843 en eng Université d'Ottawa / University of Ottawa http://hdl.handle.net/10393/20250 http://dx.doi.org/10.20381/ruor-4843 frozen mine backfill cemented paste backfill frozen tailings backfill frozen cemented paste backfill uniaxial compressive strength geotechnical properties Thesis 2011 ftunivottawa https://doi.org/10.20381/ruor-4843 2021-07-03T22:58:16Z This thesis presents the results of an investigation of factors which influence the geotechnical properties of frozen mine backfill (FMB). FMB has extensive application potential for mining in permafrost areas. The uniaxial compressive strength (UCS) of hardened backfill is often used to evaluate mine backfill stability. However, the deformation behaviour and stiffness of the FMB are also key design properties of interest. In this thesis, uniaxial compressive tests were conducted on FTB and FCPB samples. Information about the geotechnical properties of FMB is obtained. The effects of FMB mix components and vertical compression pressure on the geotechnical properties of FMB are discussed and summarized. An optimum total water content of 25%-35% is found in which the strength and the modulus of elasticity of the FTB are 1.4-3.2 MPa and 35-58 MPa, respectively. It is observed that a small amount (3-6%) of cement can significantly change the geotechnical properties of FTB. Thesis permafrost uO Research (University of Ottawa - uOttawa)
spellingShingle frozen mine backfill
cemented paste backfill
frozen tailings backfill
frozen cemented paste backfill
uniaxial compressive strength
geotechnical properties
Han, Fa Sen
Geotechnical Behaviour of Frozen Mine Backfills
title Geotechnical Behaviour of Frozen Mine Backfills
title_full Geotechnical Behaviour of Frozen Mine Backfills
title_fullStr Geotechnical Behaviour of Frozen Mine Backfills
title_full_unstemmed Geotechnical Behaviour of Frozen Mine Backfills
title_short Geotechnical Behaviour of Frozen Mine Backfills
title_sort geotechnical behaviour of frozen mine backfills
topic frozen mine backfill
cemented paste backfill
frozen tailings backfill
frozen cemented paste backfill
uniaxial compressive strength
geotechnical properties
topic_facet frozen mine backfill
cemented paste backfill
frozen tailings backfill
frozen cemented paste backfill
uniaxial compressive strength
geotechnical properties
url http://hdl.handle.net/10393/20250
https://doi.org/10.20381/ruor-4843