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Research Article

Risk of stream loss from changing irrigation, climate and groundwater extraction on the southern riverine plain of the Murray-Darling Basin in south-eastern Australia

Pages 289-310 | Received 18 Dec 2022, Accepted 13 Feb 2023, Published online: 01 Mar 2023
 

ABSTRACT

The rivers of the south-eastern Murray-Darling Basin (MDB) and the associated irrigation areas of the southern riverine plain (SRP) in south-eastern Australia have undergone major hydrological changes over the last 30 years. These include a period of lower rainfall; a rebalance of surface water diversions between consumptive and environmental water uses under the MDB Basin Plan, improvements in water infrastructure; water trade out of the region; and falling groundwater levels. All these changes increase losses from streams to groundwater systems; potentially leading to the need for greater releases from dams to maintain baseflow in the major rivers. Baseflow is important for conveyance of water, water quality and baseflow-dependent ecosystems during dry periods. Hydrological changes in the SRP will reduce the streamflow by 2029–30 by an estimated 80 to 320 GL/yr. Further hydrological changes by 2029–30 will reduce the streamflow by another 50 GL/yr in the following decade. This is the first assessment of the cumulative stream impacts of the SRP and is relatively lower than previous assessments for single drivers. The current approach of mitigating unexpected losses is to increase conveyance loss budgets as required. This could be extended to mitigate the lower end of potential impacts; but further steps to reduce losses may be required towards the upper end. Further actions include a review of extraction limits for surface water and groundwater, trigger levels, and a greater shift towards conjunctive water management. Groundwater extraction, which has dominated impacts, is increasing from a relatively low proportion of the extraction limit in Goulburn-Murray Sedimentary Plain and shallow aquifers of the SRP. Over time, climate change will become more dominant as a driver. Most monitoring required to support mitigation already exists, but data is not collated or reported in a form relevant for stream impacts. Modelling also needs to be updated with reporting of more relevant outputs.

Acknowledgements

The author would like to thank Brian Barnett of Jacobs, Melbourne, and his colleagues for the original groundwater modelling used in this report.

Conflicts of Interest

The author is not aware of any conflicts of interest.

Disclosure statement

No potential conflict of interest was reported by the author.

Additional information

Notes on contributors

Glen Walker

Glen Walker is a groundwater hydrologist with interests in the Murray-darling basin, salinity and groundwater-surface water interaction. After a career in CSIRO, he now works in his own consulting company, Grounded in Water.

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