Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/81610
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Type: Journal article
Title: Climatic records over the past 30ka from temperate Australia - a synthesis from the Oz-INTIMATE workgroup
Author: Petherick, L.
Bostock, H.
Cohen, T.
Fitzsimmons, K.
Tibby, J.
Fletcher, M.
Moss, P.
Reeves, J.
Mooney, S.
Barrows, T.
Kemp, J.
Jansen, J.
Nanson, G.
Dosseto, A.
Citation: Quaternary Science Reviews: the international multidisciplinary research and review journal, 2013; 74:58-77
Publisher: Pergamon-Elsevier Science Ltd
Issue Date: 2013
ISSN: 0277-3791
Statement of
Responsibility: 
L. Petherick, H. Bostock, T.J. Cohen, K. Fitzsimmons, J. Tibby, M.-S. Fletcher, P. Moss, J. Reeves, S. Mooney, T. Barrows, J. Kemp, J. Jansen, G. Nanson, A. Dosseto
Abstract: Temperate Australia sits between the heat engine of the tropics and the cold Southern Ocean, encompassing a range of rainfall regimes and falling under the influence of different climatic drivers. Despite this heterogeneity, broad-scale trends in climatic and environmental change are evident over the past 30ka. During the early glacial period (~30-22ka) and the Last Glacial Maximum (~22-18ka), climate was relatively cool across the entire temperate zone and there was an expansion of grasslands and increased fluvial activity in regionally important Murray-Darling Basin. The temperate region at this time appears to be dominated by expanded sea ice in the Southern Ocean forcing a northerly shift in the position of the oceanic fronts and a concomitant influx of cold water along the southeast (including Tasmania) and southwest Australian coasts. The deglacial period (~18-12ka) was characterised by glacial recession and eventual disappearance resulting from an increase in temperature deduced from terrestrial records, while there is some evidence for climatic reversals (e.g. the Antarctic Cold Reversal) in high resolution marine sediment cores through this period. The high spatial density of Holocene terrestrial records reveals an overall expansion of sclerophyll woodland and rainforest taxa across the temperate region after ~12ka, presumably in response to increasing temperature, while hydrological records reveal spatially heterogeneous hydro-climatic trends. Patterns after ~6ka suggest higher frequency climatic variability that possibly reflects the onset of large scale climate variability caused by the El Niño/Southern Oscillation. © 2013 Elsevier Ltd.
Keywords: Temperate
Australia
Palaeoenvironmental variability
OZ-INTIMATE
Review
Rights: © 2013 Elsevier Ltd.
DOI: 10.1016/j.quascirev.2012.12.012
Published version: http://dx.doi.org/10.1016/j.quascirev.2012.12.012
Appears in Collections:Aurora harvest 4
Geography, Environment and Population publications

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