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Scheme : Linkage Projects
Socio-Economic Objective : Commercial
Research Topic : complex study design
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  • Funded Activity

    Linkage Projects - Grant ID: LP0561091

    Funder
    Australian Research Council
    Funding Amount
    $242,756.00
    Summary
    Fire Risk Evaluation of Commercial Buildings. An integrated systems risk-based model for fire safety has been developed for apartment buildings. A risk-based model must also be developed for commercial high-rise buildings taking into account the sub-models most relevant for these buildings. This requires a new approach and the development and integration of new submodels. Such a model does not currently exist but its development will allow for the cost-effective design of commercial buildings wh .... Fire Risk Evaluation of Commercial Buildings. An integrated systems risk-based model for fire safety has been developed for apartment buildings. A risk-based model must also be developed for commercial high-rise buildings taking into account the sub-models most relevant for these buildings. This requires a new approach and the development and integration of new submodels. Such a model does not currently exist but its development will allow for the cost-effective design of commercial buildings whilst still maintaining appropriate levels of fire safety.
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    Funded Activity

    Linkage Projects - Grant ID: LP0348035

    Funder
    Australian Research Council
    Funding Amount
    $85,000.00
    Summary
    An Integrated Systems Analysis: Fire Growth and Severity in Enclosures. An integrated systems risk-based model for fire safety has been developed and has been internationally acclaimed. A new fire severity submodel urgently needs to be developed before ramifications of the World Trade Centre catastrophe impact on fire safety regulations. Current submodels seriously misrepresent the real fires. They were developed from 1970's experiments on 2-3 metre cube-like enclosures and predict that fires .... An Integrated Systems Analysis: Fire Growth and Severity in Enclosures. An integrated systems risk-based model for fire safety has been developed and has been internationally acclaimed. A new fire severity submodel urgently needs to be developed before ramifications of the World Trade Centre catastrophe impact on fire safety regulations. Current submodels seriously misrepresent the real fires. They were developed from 1970's experiments on 2-3 metre cube-like enclosures and predict that fires engulf enclosures. Recent preliminary experiments have revealed that real fires burn locally at windows and only appear to be all engulfing. The research will lead international collaboration involving extensive experiments and some modelling to be completed in twelve months.
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    Funded Activity

    Linkage Projects - Grant ID: LP0347256

    Funder
    Australian Research Council
    Funding Amount
    $69,099.00
    Summary
    Open-plan Office Concepts Determine Effective Facilities Space Management. Open-plan layout is the most predominant work-setting and office designs are changing substantially towards this style. This research addresses the question, "How do open-plan attributes affect effective facilities space management." While this layout is increasingly adopted, no research has definitively answered this question or evaluated open-plan design for its usefulness. This research therefore aims to respond to thi .... Open-plan Office Concepts Determine Effective Facilities Space Management. Open-plan layout is the most predominant work-setting and office designs are changing substantially towards this style. This research addresses the question, "How do open-plan attributes affect effective facilities space management." While this layout is increasingly adopted, no research has definitively answered this question or evaluated open-plan design for its usefulness. This research therefore aims to respond to this question and establish reliable criteria for effective management and re-engineering of offices with open-plans. This research is novel and timely since it endeavours to develop new models and objective criteria to better exploit this concept for greater office performance and productivity.
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    Funded Activity

    Linkage Projects - Grant ID: LP0211035

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    Embodied energy modelling of individual commercial buildings. This research will develop a method for modelling the energy embodied in individual commercial building construction. Construction material manufacturing emissions are well known in most industries, but the total embodied energy of the construction supply chain is difficult to model for individual buildings. For efficient commercial buildings, the embodied energy can represent up to 40 years of operational energy. The results will be .... Embodied energy modelling of individual commercial buildings. This research will develop a method for modelling the energy embodied in individual commercial building construction. Construction material manufacturing emissions are well known in most industries, but the total embodied energy of the construction supply chain is difficult to model for individual buildings. For efficient commercial buildings, the embodied energy can represent up to 40 years of operational energy. The results will be used to develop cost effective strategies for optimising the total life cycle energy of individual commercial buildings. This will in part improve the environmental performance of the Australian construction industry.
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    Funded Activity

    Linkage Projects - Grant ID: LP0669752

    Funder
    Australian Research Council
    Funding Amount
    $156,000.00
    Summary
    Using global optimization technique to determine the most efficient use of building/floor space to accommodate a given office design. The commercial property market is one of the largest business markets, both in Australia and globally. Businesses of all kinds use commercial office space, which represents many billions of investment dollars. A better understanding of what constitutes efficient and effective office space would produce enormous commercial benefits for this country. Historically, .... Using global optimization technique to determine the most efficient use of building/floor space to accommodate a given office design. The commercial property market is one of the largest business markets, both in Australia and globally. Businesses of all kinds use commercial office space, which represents many billions of investment dollars. A better understanding of what constitutes efficient and effective office space would produce enormous commercial benefits for this country. Historically, very little (if any) consideration has been given to the efficiency of office space design. The measurement of efficiency has now become an essential component of 'site selection'. To date, the application of optimization methodologies have not been applied to the architectural industry, making the development of tools to address this problem a significant and innovative move.
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    Funded Activity

    Linkage Projects - Grant ID: LP0560426

    Funder
    Australian Research Council
    Funding Amount
    $72,444.00
    Summary
    Determination of key parameters and control strategies for fabric energy storage (FES) systems for the various climates of Australia. This research will establish the theoretical basis for the use of advanced fabric energy storage (FES) systems in commercial buildings in Australia. A thermal model of a FES will be developed and then incorporated into a full building model, so that the interaction of the FES with other building elements may be studied. The model will be validated against data fro .... Determination of key parameters and control strategies for fabric energy storage (FES) systems for the various climates of Australia. This research will establish the theoretical basis for the use of advanced fabric energy storage (FES) systems in commercial buildings in Australia. A thermal model of a FES will be developed and then incorporated into a full building model, so that the interaction of the FES with other building elements may be studied. The model will be validated against data from measurements taken in a commercial building. A parametric study will be carried out to determine the optimum control strategy options and design parameters for FES systems in various climates in Australia.
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    Funded Activity

    Linkage Projects - Grant ID: LP0219732

    Funder
    Australian Research Council
    Funding Amount
    $45,090.00
    Summary
    Natural and Artificial Lighting Control Energy and Visual Optimisation for a Low Energy Building. Artificial lighting is highlighted as the most significant area of opportunity to reduce energy as well as greenhouse emission. The application of intergrated daylight design together with artificial lighting control is researched. Control strategies of switching and dimming the artificial daylighting in conjunction with set-point levels, user preferences and daylighting maximisation are measured. T .... Natural and Artificial Lighting Control Energy and Visual Optimisation for a Low Energy Building. Artificial lighting is highlighted as the most significant area of opportunity to reduce energy as well as greenhouse emission. The application of intergrated daylight design together with artificial lighting control is researched. Control strategies of switching and dimming the artificial daylighting in conjunction with set-point levels, user preferences and daylighting maximisation are measured. The goal is to find the most effective saving strategies whilst maintaining visual comfort
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