Discovery Early Career Researcher Award - Grant ID: DE180101154
Funder
Australian Research Council
Funding Amount
$363,996.00
Summary
Regulating cumulative environmental effects: Designing global best practice. This project aims to analyse and evaluate laws regulating cumulative environmental effects in the United States of America, European Union, Canada and Australia. The project will use methods combining law, ethics, and natural and spatial science to develop a framework of globally relevant best practice tools for regulating cumulative effects. The outcomes will increase the capacity of regulators, industry, and the commu ....Regulating cumulative environmental effects: Designing global best practice. This project aims to analyse and evaluate laws regulating cumulative environmental effects in the United States of America, European Union, Canada and Australia. The project will use methods combining law, ethics, and natural and spatial science to develop a framework of globally relevant best practice tools for regulating cumulative effects. The outcomes will increase the capacity of regulators, industry, and the community to better manage common challenges in managing environmental effects and reducing environmental harms.Read moreRead less
Water availability and demand: better forecasts, better management. This project aims to improve Australia’s capability in the provision and use of water forecasts for managing water resources. The current water forecasts are not fully utilised by water agencies as they are not sufficiently comprehensive and advanced. This project expects to achieve a step change in the uptake and utility of hydro-climate forecasts through an extensive partnership of leading researchers and operational agencies ....Water availability and demand: better forecasts, better management. This project aims to improve Australia’s capability in the provision and use of water forecasts for managing water resources. The current water forecasts are not fully utilised by water agencies as they are not sufficiently comprehensive and advanced. This project expects to achieve a step change in the uptake and utility of hydro-climate forecasts through an extensive partnership of leading researchers and operational agencies of hydro-climate forecasting, with federal, state and regional water agencies.Read moreRead less
A decadal to inter-decadal streamflow prediction system. This project will develop the first ever decadal streamflow prediction system for Australia, leading to predictions of streamflow for the next 10 years and beyond that take into account both natural climatic variability (driven by factors such as the El Nino Southern Oscillation) and changing greenhouse gas concentrations due to a warming planet.
Exploring water worlds for ecohydrologic modelling of ephemeral catchments. This project aims to identify and quantify the key processes driving the generation of streamflow in ephemeral catchments with different rainfall regimes, topography, geology, and two contrasting land uses. Four ephemeral catchments in south-western Victoria will be used as a case study to identify how these catchments store and release water. Particular focus will be directed to understanding the roles of groundwater an ....Exploring water worlds for ecohydrologic modelling of ephemeral catchments. This project aims to identify and quantify the key processes driving the generation of streamflow in ephemeral catchments with different rainfall regimes, topography, geology, and two contrasting land uses. Four ephemeral catchments in south-western Victoria will be used as a case study to identify how these catchments store and release water. Particular focus will be directed to understanding the roles of groundwater and surface runoff in supplying the streams when they flow, and how rainfall is partitioned between tree water use, groundwater recharge, and streamflow. The outcomes from experimental observations will be used to improve current hydrological models to support land and water management.Read moreRead less
Conserving Carbon in the Extractive Frontiers of Insular Southeast Asia: Risks or Opportunities? Increasingly global climate change governance uses market-based mechanisms to offer forest users financial incentives to maintain forest carbon in the frontiers of Southeast Asia. At the same time, these forest landscapes are rapidly being converted for ‘boom crop’ production such as oil palm and rubber. However, little is known about how carbon governance intersects with such monocropping to affect ....Conserving Carbon in the Extractive Frontiers of Insular Southeast Asia: Risks or Opportunities? Increasingly global climate change governance uses market-based mechanisms to offer forest users financial incentives to maintain forest carbon in the frontiers of Southeast Asia. At the same time, these forest landscapes are rapidly being converted for ‘boom crop’ production such as oil palm and rubber. However, little is known about how carbon governance intersects with such monocropping to affect local livelihoods, property rights and social relations. This project examines how the global market-driven approach, REDD+ (Reduced Emissions from Environmental Degradation and Deforestation+), governs forest carbon vis-à-vis commodity production, how this impacts rural livelihoods, and influences the viability of climate change governance. Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE170100007
Funder
Australian Research Council
Funding Amount
$552,000.00
Summary
A fisheries and oceanographic observing system for the continental shelf. This project aims to create a floating, mobile fisheries and oceanographic observing system for Eastern Australia. Australian oceanographic and fisheries research has been hampered by the lack of appropriately sized and equipped research vessels required to investigate continental shelf waters and beyond. The automated floating facility will provide data to support ongoing ARC-funded research programs in marine biogeochemi ....A fisheries and oceanographic observing system for the continental shelf. This project aims to create a floating, mobile fisheries and oceanographic observing system for Eastern Australia. Australian oceanographic and fisheries research has been hampered by the lack of appropriately sized and equipped research vessels required to investigate continental shelf waters and beyond. The automated floating facility will provide data to support ongoing ARC-funded research programs in marine biogeochemistry, climate change, ocean acidification, coastal hydrology, biological oceanography, active acoustics, and fisheries resources and technology in the continental shelf and beyond. The expected outcome will bridge a major gap in fisheries and oceanographic research capacity to make observations in a critical region of the Australian marine estate and provide a stronger scientific basis for early detection of changes in seawater chemistry, biology and fisheries in priority waters experiencing rapid change.Read moreRead less
Forecasting drought impacts months ahead using satellite data. Skillful seasonal water and crop forecasts could do much to help cope with drought and water-related food crises. Recent advances in hydrological modelling and satellite remote sensing of surface soil moisture, landscape water storage and vegetation biomass have created a great opportunity to produce such forecasts over large areas. This project will exploit that opportunity by assimilating the satellite observations into a global wa ....Forecasting drought impacts months ahead using satellite data. Skillful seasonal water and crop forecasts could do much to help cope with drought and water-related food crises. Recent advances in hydrological modelling and satellite remote sensing of surface soil moisture, landscape water storage and vegetation biomass have created a great opportunity to produce such forecasts over large areas. This project will exploit that opportunity by assimilating the satellite observations into a global water and vegetation forecasting model. The resulting improvement in seasonal forecasts of stream flow, soil moisture and crop production will be quantified and compared to the limited forecasts that are currently available.Read moreRead less
Mapping the Political Ecology of the Edible Birds’ Nests Trade in Indonesia. This study examines the origins and impacts of the rapidly emerging edible birds’ nests (EBN) trade for rural livelihoods and ecologies in Southeast Asia. A high-value Chinese delicacy, the EBN trade has surged across rural Indonesia and beyond. In partnership with the WWF and Tropenbos, our pioneering study investigates how rural producers negotiate the uneven social, economic and environmental influences of the EBN co ....Mapping the Political Ecology of the Edible Birds’ Nests Trade in Indonesia. This study examines the origins and impacts of the rapidly emerging edible birds’ nests (EBN) trade for rural livelihoods and ecologies in Southeast Asia. A high-value Chinese delicacy, the EBN trade has surged across rural Indonesia and beyond. In partnership with the WWF and Tropenbos, our pioneering study investigates how rural producers negotiate the uneven social, economic and environmental influences of the EBN commodity chain in the threatened Heart of Borneo, Indonesia, and the major urban trading centres of Jakarta, Singapore, and Hong Kong. The project offers novel insights into the trade’s sustainability across rural and urban regions of Asia and informs policy for poverty reduction and environmental management in the region.Read moreRead less
A robust integrated streamflow forecasting framework for Australian water information and management agencies. This project aims to deliver an accurate and reliable seasonal streamflow forecasting system for Australian water users by developing a flexible rainfall-runoff modelling approach integrated into a Bayesian inference and prediction framework. These scientific developments aim to significantly advance the operational capabilities of the Australian Bureau of Meteorology to deliver robust ....A robust integrated streamflow forecasting framework for Australian water information and management agencies. This project aims to deliver an accurate and reliable seasonal streamflow forecasting system for Australian water users by developing a flexible rainfall-runoff modelling approach integrated into a Bayesian inference and prediction framework. These scientific developments aim to significantly advance the operational capabilities of the Australian Bureau of Meteorology to deliver robust streamflow forecasts to water agencies such as South East Queensland Water and others across Australia. Accurate predictions of future water flows are of tremendous value to urban and rural Australian communities whose economic prosperity, water security and social well-being depend on reliable estimates of water availability.Read moreRead less
Reconstructing millennial-scale streamflow variability to assess near-future risks to water-generated renewable energy. Hydroelectric power is a key component of Australia's national renewable energy policy. The project will combine Hydro Tasmania's water supply and distribution network with historical reconstructions of streamflow variability to conduct stress tests of future water supplies and hydroelectric generating capacity for the Australian power grid.