Spatial Knowledge and the Built Environment: The Design Implications of Making, Processing and Digitally Prototyping Architectural Models. The construction industry accounts for 6.7% of Australia's GDP. Beyond the more pragmatic economic benefits, however, lies the potential to influence the physical quality and appearance of our nation's building within an existing economic framework. The evaluation of differing modelling methods in design will have considerable implications for the way in whic ....Spatial Knowledge and the Built Environment: The Design Implications of Making, Processing and Digitally Prototyping Architectural Models. The construction industry accounts for 6.7% of Australia's GDP. Beyond the more pragmatic economic benefits, however, lies the potential to influence the physical quality and appearance of our nation's building within an existing economic framework. The evaluation of differing modelling methods in design will have considerable implications for the way in which designing is carried out. It will lead to new kinds of computer strategies that will guide the direction of development of programs used in design modelling by showing that current tools do not properly facilitate certain kinds of design inquiry available by more traditionally established means.Read moreRead less
Special Research Initiatives - Grant ID: SR0354740
Funder
Australian Research Council
Funding Amount
$10,000.00
Summary
CaGaWaLo: regulation of carbon gain and water loss by woody vegetation. Trees and shrubs are widely perceived as central to solving problems of national and international significance. Seed funding is sought to facilitate establishment of a research network focused on their ability to sequester carbon and transmit water to the atmosphere. The proposed network is broadly based in plant physiology and ecology and contains a strong cross-section of leading international expertise in relevant sub- ....CaGaWaLo: regulation of carbon gain and water loss by woody vegetation. Trees and shrubs are widely perceived as central to solving problems of national and international significance. Seed funding is sought to facilitate establishment of a research network focused on their ability to sequester carbon and transmit water to the atmosphere. The proposed network is broadly based in plant physiology and ecology and contains a strong cross-section of leading international expertise in relevant sub-disciplines. By leveraging the huge pool of international expertise and focusing on a range of scales (from molecular to biosphere scales), this network will yield new ideas and approaches that will produce outputs and outcomes of national significance.Read moreRead less
A new hypothesis for the development of hollows in Box-Ironbark forest. Timber harvesting in Box-Ironbark forest over the past 150 years has significantly affected the habitat of hollow dependent fauna. Current management aims at speeding the growth of trees to accelerate hollow formation. Recent studies suggest that hollows form in trees of the Box-Ironbark forest following basal stem damage by fire or windstorm, rather than from branch damage as previously assumed. This hypothesis will be t ....A new hypothesis for the development of hollows in Box-Ironbark forest. Timber harvesting in Box-Ironbark forest over the past 150 years has significantly affected the habitat of hollow dependent fauna. Current management aims at speeding the growth of trees to accelerate hollow formation. Recent studies suggest that hollows form in trees of the Box-Ironbark forest following basal stem damage by fire or windstorm, rather than from branch damage as previously assumed. This hypothesis will be tested in relation to wildfires in 1985, 1991 and 1993 and by experimental simulation of these events. The results of this research are likely to have major implications for the management of Box- Ironbark forests.Read moreRead less
Remotely sensed forest water use in space and time. Remotely sensed forest water use in space and time. This project aims to develop and apply new methods to scale forest water use from plot to catchment-level, using relationships between plot-level annual evapotranspiration and biophysical and biochemical properties of stands detectable by unmanned aircraft systems and other remote sensing platforms. Australia's water security depends on understanding how changes in forests from disturbance and ....Remotely sensed forest water use in space and time. Remotely sensed forest water use in space and time. This project aims to develop and apply new methods to scale forest water use from plot to catchment-level, using relationships between plot-level annual evapotranspiration and biophysical and biochemical properties of stands detectable by unmanned aircraft systems and other remote sensing platforms. Australia's water security depends on understanding how changes in forests from disturbance and climate change influence catchment water yields. This project will estimate water yields over time and space in ungauged catchments with disturbed eucalypt forests. This research is expected to enable more effective risk mitigation and planning for augmentations; improved fire management strategies; and better water management of the Murray Darling Basin.Read moreRead less
New methods for mapping variation in forest water use in time and space. Disturbance of eucalypt forests can have dramatic impacts on catchment water yields. In partnership with Melbourne Water Corporation, this project will develop and test new methods for accurate mapping of variation in water use across forested water supply catchments and for accurately determining the effects of this on water supplies.
Fate of endocrine disrupting chemicals in water repellent soil. The fate of endocrine system disrupting chemicals in soils has not been studied, even though some have been linked to human health effects. Many are found in municipal sewage wastes. This project will measure chemical concentrations in water repellent forest plantation soils irrigated with municipal wastewater. The outcome will be data specifically addressing (1) the risks when forest plantations are irrigated with municipal wastewa ....Fate of endocrine disrupting chemicals in water repellent soil. The fate of endocrine system disrupting chemicals in soils has not been studied, even though some have been linked to human health effects. Many are found in municipal sewage wastes. This project will measure chemical concentrations in water repellent forest plantation soils irrigated with municipal wastewater. The outcome will be data specifically addressing (1) the risks when forest plantations are irrigated with municipal wastewater in Victoria and, by extension applicable to other Australian ecosystems, (2) Environment Australia's stated need for information directly applicable to ecosystem and human health risk assessment of the environmental risks posed by endocrine disrupting chemicals.Read moreRead less
Cellular automata model of forest stands to predict size-class distribution and survival. Existing forest growth models predict well stand level processes such as growth. However, they provide little information on forest structure and how this affects commercial forest products, risks of growing plantations and stand dynamics that determine carbon sequestration and water-use and result in age-related decline in productivity and self-thinning. By using newly developed technology to quantify in ....Cellular automata model of forest stands to predict size-class distribution and survival. Existing forest growth models predict well stand level processes such as growth. However, they provide little information on forest structure and how this affects commercial forest products, risks of growing plantations and stand dynamics that determine carbon sequestration and water-use and result in age-related decline in productivity and self-thinning. By using newly developed technology to quantify inter-tree competition, tree level resource supply, between tree genetic differences and the importance of chance events this project will draw on complexity theory to develop an innovative model that partitions stand level production to forecast the growth and size of individual trees.Read moreRead less
Systemic and adaptive water governance: lessons for Australia from China and South Africa. The way we manage catchments under climate change is one of Australia’s major public policy challenges. This project will give new direction to catchment management by developing a science-policy linked, systemic and adaptive water governance mechanism. By recommending policy options for more sustainable water use and creating favourable social-institutional factors for the implementation of these policy o ....Systemic and adaptive water governance: lessons for Australia from China and South Africa. The way we manage catchments under climate change is one of Australia’s major public policy challenges. This project will give new direction to catchment management by developing a science-policy linked, systemic and adaptive water governance mechanism. By recommending policy options for more sustainable water use and creating favourable social-institutional factors for the implementation of these policy options in two Australian catchment authorities through comparative and parallel research in China and South Africa. This project directly addresses the national priority goals of “Water - a critical resource” and “Responding to climate change”. This project will also stress Australia's important role in this globally significant issue. Read moreRead less
Responding to Climate Change: Australia's Environmental Law and Regulatory Framework. Climate change presents Australia with unparalleled sustainability challenges. Impacts on environmental resources will require an integrated legal and socio-economic regulatory response. An effective and adaptable environmental law framework will be crucial for adaptation and mitigation measures. The project addresses this need by undertaking a comprehensive, interdisciplinary evaluation of Australia's legal ca ....Responding to Climate Change: Australia's Environmental Law and Regulatory Framework. Climate change presents Australia with unparalleled sustainability challenges. Impacts on environmental resources will require an integrated legal and socio-economic regulatory response. An effective and adaptable environmental law framework will be crucial for adaptation and mitigation measures. The project addresses this need by undertaking a comprehensive, interdisciplinary evaluation of Australia's legal capacity to respond to climate change, so identifying appropriate governance structures and regulatory tools. This analysis is vital to positioning Australian environmental law to manage climate change impacts and associated social, ecological and economic costs and to ensure compliance with international obligations.Read moreRead less
Architecture on the edge: designing sustainable housing systems for vulnerable communities. The aim of the research is to analyse the disciplinary experiences of architects working on the design of housing across four vulnerable communities and to identify best practices within the profession that might enable architects to address a wider range of global problems including civil conflict, climate change and natural disasters.