The effects of climate change on ecologically-relevant flow regime and water quality attributes

被引:0
作者
Fiona Dyer
Sondoss ElSawah
Barry Croke
Rachael Griffiths
Evan Harrison
Paloma Lucena-Moya
Anthony Jakeman
机构
[1] University of Canberra,Institute for Applied Ecology
[2] Australian National University,Integrated Catchment Assessment and Management Centre, The Fenner School of Environment and Society
[3] National Centre for Groundwater Research and Training,Department of Mathematics
[4] Australian National University,undefined
来源
Stochastic Environmental Research and Risk Assessment | 2014年 / 28卷
关键词
Climate change; Flow regime alteration; Indices of hydrological alteration; Freshwater ecology; Water quality; Bayesian network;
D O I
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中图分类号
学科分类号
摘要
The management of freshwater ecosystems is usually targeted through the regulation of water quantity (limiting diversions and providing environmental flows) and regulation of water quality (setting limits or targets for constituent concentrations). Climate change is likely to affect water quantity and quality in multiple ways and the future management of freshwater ecosystems requires predictions of plausible future conditions. We use a suite of ecologically-relevant hydrological indicators to determine the significance of projected climate-driven hydrological changes in the Upper Murrumbidgee River Catchment in south eastern Australia in relation to river regulation. We also determine the possible water quality changes (in relation to guidelines for aquatic ecosystem protection) associated with the climate change projections to identify the combined effects of hydrological and water quality changes. The results of this study suggest that river regulation has resulted in greater changes to ecologically-relevant streamflow characteristics than climate change scenarios that involve a 1 and 2 °C temperature rise in the Upper Murrumbidgee River Catchment. In contrast to the projected hydrological changes, Bayesian Network modelling suggests very small changes to violations of water quality thresholds designed to protect aquatic ecosystems as a result of climate change. By identifying key components of the flow and water quality regimes that may be affected by climate change, we are able to provide managers with information that assists in developing adaptation initiatives.
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页码:67 / 82
页数:15
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共 203 条
[1]  
Acworth RI(1997)The role of debris-flow deposits in the development of dryland salinity in the Yass River catchment, New South Wales, Australia Hydrogeol J 5 22-36
[2]  
Broughton A(2011)Bayesian networks in environmental modelling Environ Model Softw 26 1376-1388
[3]  
Nicholl C(2013)Groundwater quality assessment using data clustering based on hybrid Bayesian networks Stoch Env Res Risk Assess 27 435-447
[4]  
Jankowski J(2012)Investigating the relationships between environmental stressors and stream condition using Bayesian belief networks Freshw Biol 57 58-73
[5]  
Aguilera PA(2005)Eutrophication model for Lake Washington (USA) Part II - model calibration and system dynamics analysis Ecol Model 187 179-200
[6]  
Fernandez A(2003)Relative effects of multi-decadal climatic variability and changes in the mean and variability of climate due to global warming: future streamflows in Britain J Hydrol 270 195-213
[7]  
Fernandez R(2003)Flow restoration and protection in Australian rivers River Res Appl 19 377-395
[8]  
Rumi R(2005)DHRAM: a method for classifying river flow regime alterations for the EC Water Framework Directive Aquatic Conserv Marine Freshw Ecosyst 15 427-446
[9]  
Salmeron A(2003)Integrated approach to total maximum daily load development for Neuse River Estuary using Bayesian probability network model (Neu-BERN) J Water Resour Plan Manag-ASCE 129 271-282
[10]  
Aguilera PA(2002)Basic principles and ecological consequences of altered flow regimes for aquatic biodiversity Environ Manage 30 492-507