Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows

<p>The flow of thickened mine tailings within a tailings storage facility is a complex interaction between unconstrained viscoplastic free surface flow and possible coarse particle settling within the flow depth. The broad focus of this work is developing a robust framework for modelling taili...

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Main Author: Treinen, J.M.
Language:EN
Published: University of Colorado at Boulder 2017
Subjects:
Online Access:http://pqdtopen.proquest.com/#viewpdf?dispub=10267449
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spelling ndltd-PROQUEST-oai-pqdtoai.proquest.com-102674492017-06-08T16:14:22Z Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows Treinen, J.M. Engineering|Civil engineering|Mining engineering <p>The flow of thickened mine tailings within a tailings storage facility is a complex interaction between unconstrained viscoplastic free surface flow and possible coarse particle settling within the flow depth. The broad focus of this work is developing a robust framework for modelling tailings beach flows. Modelling tailings flow evolution in three dimensions within a storage facility will ultimately provide greater understanding of beach slope formation, as well as the ability to optimize deposition sequencing. This thesis focuses on the first step of developing a tailings model considering the transport and settling of mono-sized coarse particles within two dimensional (length and depth) laminar viscoplastic carrier fluid sheet flow. The 2D model consists of a semi-implicit finite difference shallow water sheet flow model for predicting the viscoplastic flow depth and discharge down the beach. The coarse particle transport and hindered settling within the flow are predicted using a scalar transport model. The scalar transport and shallow water flow model are coupled together using coarse particle rheology augmentation. Two key novel advancements were made through the model development. The first is coupling the coarse particle rheology augmentation within the free surface flow to the coarse particle hindered settling behavior with depth. This coupling allows for the rheology augmentation due to the coarse solid fraction to be incorporated seamlessly into both the fluid flow solver and the particle settling model. The second advancement is expanding the rheology augmentation and hindered settling coupling to particle flows beyond the Stoke?s flow regime. Ultimately, the 2D model results are compared against Spelay?s (2007) laminar settling experimental measurements for oil sand thickened tailings (TT) and composite tailings (CT) slurries, along with Spelay?s 1D settling model. The 2D model provides improved prediction of the particle concentration profiles within the fluid flow compared to the 1D model. The 2D model is also able to predict the increase in flow depth due to the particle accumulation on the bed, as well as the downslope particle transport and settling behavior. University of Colorado at Boulder 2017-06-02 00:00:00.0 thesis http://pqdtopen.proquest.com/#viewpdf?dispub=10267449 EN
collection NDLTD
language EN
sources NDLTD
topic Engineering|Civil engineering|Mining engineering
spellingShingle Engineering|Civil engineering|Mining engineering
Treinen, J.M.
Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
description <p>The flow of thickened mine tailings within a tailings storage facility is a complex interaction between unconstrained viscoplastic free surface flow and possible coarse particle settling within the flow depth. The broad focus of this work is developing a robust framework for modelling tailings beach flows. Modelling tailings flow evolution in three dimensions within a storage facility will ultimately provide greater understanding of beach slope formation, as well as the ability to optimize deposition sequencing. This thesis focuses on the first step of developing a tailings model considering the transport and settling of mono-sized coarse particles within two dimensional (length and depth) laminar viscoplastic carrier fluid sheet flow. The 2D model consists of a semi-implicit finite difference shallow water sheet flow model for predicting the viscoplastic flow depth and discharge down the beach. The coarse particle transport and hindered settling within the flow are predicted using a scalar transport model. The scalar transport and shallow water flow model are coupled together using coarse particle rheology augmentation. Two key novel advancements were made through the model development. The first is coupling the coarse particle rheology augmentation within the free surface flow to the coarse particle hindered settling behavior with depth. This coupling allows for the rheology augmentation due to the coarse solid fraction to be incorporated seamlessly into both the fluid flow solver and the particle settling model. The second advancement is expanding the rheology augmentation and hindered settling coupling to particle flows beyond the Stoke?s flow regime. Ultimately, the 2D model results are compared against Spelay?s (2007) laminar settling experimental measurements for oil sand thickened tailings (TT) and composite tailings (CT) slurries, along with Spelay?s 1D settling model. The 2D model provides improved prediction of the particle concentration profiles within the fluid flow compared to the 1D model. The 2D model is also able to predict the increase in flow depth due to the particle accumulation on the bed, as well as the downslope particle transport and settling behavior.
author Treinen, J.M.
author_facet Treinen, J.M.
author_sort Treinen, J.M.
title Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
title_short Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
title_full Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
title_fullStr Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
title_full_unstemmed Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
title_sort modelling transport and deposition of coarse particles in viscoplastic tailings beach flows
publisher University of Colorado at Boulder
publishDate 2017
url http://pqdtopen.proquest.com/#viewpdf?dispub=10267449
work_keys_str_mv AT treinenjm modellingtransportanddepositionofcoarseparticlesinviscoplastictailingsbeachflows
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