Understanding hydroclimate processes in the Murray-Darling Basin for natural resources management
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Published:2012-07-12
Issue:7
Volume:16
Page:2049-2068
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ISSN:1607-7938
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Container-title:Hydrology and Earth System Sciences
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language:en
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Short-container-title:Hydrol. Earth Syst. Sci.
Author:
Gallant A. J. E.,Kiem A. S.,Verdon-Kidd D. C.,Stone R. C.,Karoly D. J.
Abstract
Abstract. Isolating the causes of extreme variations or changes in the hydroclimate is difficult due to the complexities of the driving mechanisms, but it is crucial for effective natural resource management. In Australia's Murray-Darling Basin (MDB), ocean-atmosphere processes causing hydroclimatic variations occur on time scales from days to centuries, all are important, and none are likely to act in isolation. Instead, interactions between all hydroclimatic drivers, on multiple time scales, are likely to have caused the variations observed in MDB instrumental records. A simplified framework is presented to assist natural resource managers in identifying the potential causes of hydroclimatic anomalies. The framework condenses an event into its fundamental elements, including its spatial and temporal signal and small-scale evolution. The climatic processes that are potentially responsible are then examined to determine possible causes. The framework was applied to a period of prolonged and severe dry conditions occurring in the southern MDB from 1997–2010, providing insights into possible causal mechanisms that are consistent with recent studies. The framework also assists in identifying uncertainties and gaps in our understanding that need to be addressed.
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Reference122 articles.
1. Alexander, L. V. and Arblaster, J. M.: Assessing trends in observed and modelled climate extremes over Australia in relation to future projections, Int. J. Climatol., 29, 417–435, https://doi.org/10.1002/joc.1730, 2009. 2. Alexander, L. V., Uotila, P., Nicholls, N., and Lynch, A.: A new daily pressure dataset for Australia and its application to the assessment of changes in synoptic patterns during the last century, J. Climate, 23, 1111–1126, https://doi.org/10.1175/2009JCLI2972.1, 2010. 3. Allan, R., Chambers, D., Drosdowsky, W., Hendon, H. H., Latif, M., Nicholls, N., Smith, I. N., Stone, R., and Tourre, Y.: Is there an Indian Ocean dipole, and is it independent of the El Nino – Southern Oscillation?, CLIVAR Exchanges, 6, 18–22, 2001. 4. Arblaster, J. M. and Meehl, G. A.: Contributions of external forcings to southern annular mode trends, J. Climate, 19, 2896–2905, 2006. 5. Ashok, K., Reason, C. J. C., and Meyers, G. A.: Variability in the tropical southeast Indian Ocean and links with southeast Australian winter rainfall, Geophys. Res. Lett., 27, 3977–3980, 2000.
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