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Field of Research : Mining Engineering
Socio-Economic Objective : Precious (Noble) Metal Ores
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Mining Engineering (5)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0882627

    Funder
    Australian Research Council
    Funding Amount
    $179,786.00
    Summary
    Rapid optimisation in underground mining network design. This project represents a major advance in the problem of optimising the infrastructure of underground mines and providing powerful planning tools for management. The software tools we are developing will prove important to the mining industry because of their accuracy, flexibility and generality. Not only can they be used for benchmarking in the design of specific mines, but they also provide a reliable method for testing the cost-benefi .... Rapid optimisation in underground mining network design. This project represents a major advance in the problem of optimising the infrastructure of underground mines and providing powerful planning tools for management. The software tools we are developing will prove important to the mining industry because of their accuracy, flexibility and generality. Not only can they be used for benchmarking in the design of specific mines, but they also provide a reliable method for testing the cost-benefit of emerging technologies. This is an important project for ensuring that Australia's mining industry remains efficient and internationally competitive. Given our economic dependence on mineral resources, it will also benefit Australia as a whole.
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    Funded Activity

    Linkage Projects - Grant ID: LP0453632

    Funder
    Australian Research Council
    Funding Amount
    $248,259.00
    Summary
    Decision tools for underground mine development. The aim of this project is to develop innovative new strategic tools to assist senior mine management in planning underground mine operations. It will be based on modelling underground mine layouts using the theory of abstract mathematical networks. For many years, there have been well-developed methods of modelling and optimising the operation of open-cut mines. The design of the infrastructure of underground mines has a similar potential for opt .... Decision tools for underground mine development. The aim of this project is to develop innovative new strategic tools to assist senior mine management in planning underground mine operations. It will be based on modelling underground mine layouts using the theory of abstract mathematical networks. For many years, there have been well-developed methods of modelling and optimising the operation of open-cut mines. The design of the infrastructure of underground mines has a similar potential for optimisation and strategic modelling. This design optimisation will lead to huge savings in the costs of underground mines. Similar methods will be used to plan drilling programs, which are major cost items.
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    Funded Activity

    Discovery Projects - Grant ID: DP0985662

    Funder
    Australian Research Council
    Funding Amount
    $538,000.00
    Summary
    The Influence of particle shape fragmentation and compaction on 3D hopper flow. According to world-leading material scientist Patrick Richard, "Granular materials are ubiquitous in nature and are the second-most manipulated material in industry (the first one is water)". Our research will produce massive three dimensional computer simulations predicting and analysing the influence of particle size and shape on the morphology of industrial and natural granular flows. The results will have directl .... The Influence of particle shape fragmentation and compaction on 3D hopper flow. According to world-leading material scientist Patrick Richard, "Granular materials are ubiquitous in nature and are the second-most manipulated material in industry (the first one is water)". Our research will produce massive three dimensional computer simulations predicting and analysing the influence of particle size and shape on the morphology of industrial and natural granular flows. The results will have directly and immediately relevant applications in a range of Australian industries, including mass mining and minerals processing and will further make a major contribution to understanding and modelling a variety of geo-hazards.
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    Funded Activity

    Linkage Projects - Grant ID: LP0348798

    Funder
    Australian Research Council
    Funding Amount
    $315,000.00
    Summary
    Development of a new stochastic short-term production scheduling optimisation approach for open pit metal mines. Stochastic short-term production scheduling (STPS) in open pit mines provides a new framework allowing production schedules to manage risk robustly despite uncertainties in geological and mining conditions. STPS depends on both mining (stockpiling process, multiple ore types and processors, waste production, equipment mobility, feasible sequencing) and geological (in-situ ore variabil .... Development of a new stochastic short-term production scheduling optimisation approach for open pit metal mines. Stochastic short-term production scheduling (STPS) in open pit mines provides a new framework allowing production schedules to manage risk robustly despite uncertainties in geological and mining conditions. STPS depends on both mining (stockpiling process, multiple ore types and processors, waste production, equipment mobility, feasible sequencing) and geological (in-situ ore variability, geological uncertainty, simulated 'future' grade control data) factors. Formulations require development of innovative stochastic goal programming techniques and high-order spatial stochastic simulations. STPS has a major impact on multi-million dollar mining cash flows and affects environmental sustainability. This project represents a strategic priority for some of Australia's largest mining companies.
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    Funded Activity

    Linkage Projects - Grant ID: LP0562333

    Funder
    Australian Research Council
    Funding Amount
    $202,740.00
    Summary
    Excavation Design and Sequencing in Highly Stressed Rock Masses. An increasingly large number of Australian underground mines are being operated in highly stressed rock mass conditions, where safe and economic mining is a real challenge due to rock mass instability. In the future, this problem will become more significant as extraction gets deeper with the discoveries of new deeper orebodies or the extension of current operations at depth. The aim of this research project is to provide the Austr .... Excavation Design and Sequencing in Highly Stressed Rock Masses. An increasingly large number of Australian underground mines are being operated in highly stressed rock mass conditions, where safe and economic mining is a real challenge due to rock mass instability. In the future, this problem will become more significant as extraction gets deeper with the discoveries of new deeper orebodies or the extension of current operations at depth. The aim of this research project is to provide the Australian mining industry with effective design tools to engineer the largest, most economical, yet stable excavations in rock. The research project will use a generalised framework for design where rock mass characterisation, excavation design, behaviour and dilution control will be studied in detail.
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