Causes and Consequences of Unutilised Irrigation Orders in the Central River Murray Area

Regulation of river systems has led to the development of irrigated agriculture and other uses of this engineered additional water supply. One of the main environmental drawbacks from regulation of river systems has been a shift in the seasonality of flow of these rivers. One such river is the River...

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Published inWater resources management Vol. 23; no. 2; pp. 193 - 217
Main Authors Berrisford, Matthew J, Argent, Robert M, Malano, Hector M
Format Journal Article
LanguageEnglish
Published Dordrecht Dordrecht : Springer Netherlands 2009
Springer Netherlands
Springer
Springer Nature B.V
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Abstract Regulation of river systems has led to the development of irrigated agriculture and other uses of this engineered additional water supply. One of the main environmental drawbacks from regulation of river systems has been a shift in the seasonality of flow of these rivers. One such river is the River Murray, Australia. A common concern for the River Murray is a decreased incidence of winter and spring flooding of floodplains. A lesser known problem is the increased incidence of unseasonal flooding of the Barmah-Millewa Forest (B-MF) around the Barmah Choke on the River Murray. These flood events have often been said to be created by 'rain rejection events'. Rain rejection events are the rejection of advanced irrigation orders by irrigators due to rainfall on their properties meaning this previously requested water goes unutilised. This paper investigates the causes of unutilised irrigation orders (UIO) and takes a holistic view to investigate the variables affecting unseasonal flooding of the B-MF. It is concluded from this research that unseasonal flooding of the B-MF can be linked to UIO but there are other more significant factors; inflow from Ovens River particularly during December, River Murray flow at Albury and the available airspace in the River Murray at Tocumwal. UIO were found to be linked to the previous day's UIO, rainfall and the advanced order volume placed four days prior.
AbstractList Causes and consequences of unutilized irrigation orders in the central River Murray area are discussed. Irrigation operations and irrigator behavior are driven by the water sources to which an irrigator has access. River Murray Water (RMW) is responsible for supplying water to a number of irrigation authorities, towns, cities and environmental sites along the River Murray, each with an individual flow requirement. The results show that the response variable River Murray flow at Tocumwal on day is found to be most strongly linked to the variables, such as square root of Ovens River inflow on day, River Murray flow at Albury on day, and River Murray airspace at Tocumwal on day.
Regulation of river systems has led to the development of irrigated agriculture and other uses of this engineered additional water supply. One of the main environmental drawbacks from regulation of river systems has been a shift in the seasonality of flow of these rivers. One such river is the River Murray, Australia. A common concern for the River Murray is a decreased incidence of winter and spring flooding of floodplains. A lesser known problem is the increased incidence of unseasonal flooding of the Barmah-Millewa Forest (B-MF) around the Barmah Choke on the River Murray. These flood events have often been said to be created by 'rain rejection events'. Rain rejection events are the rejection of advanced irrigation orders by irrigators due to rainfall on their properties meaning this previously requested water goes unutilised. This paper investigates the causes of unutilised irrigation orders (UIO) and takes a holistic view to investigate the variables affecting unseasonal flooding of the B-MF. It is concluded from this research that unseasonal flooding of the B-MF can be linked to UIO but there are other more significant factors; inflow from Ovens River particularly during December, River Murray flow at Albury and the available airspace in the River Murray at Tocumwal. UIO were found to be linked to the previous day's UIO, rainfall and the advanced order volume placed four days prior. [PUBLICATION ABSTRACT]
Regulation of river systems has led to the development of irrigated agriculture and other uses of this engineered additional water supply. One of the main environmental drawbacks from regulation of river systems has been a shift in the seasonality of flow of these rivers. One such river is the River Murray, Australia. A common concern for the River Murray is a decreased incidence of winter and spring flooding of floodplains. A lesser known problem is the increased incidence of unseasonal flooding of the Barmah-Millewa Forest (B-MF) around the Barmah Choke on the River Murray. These flood events have often been said to be created by 'rain rejection events'. Rain rejection events are the rejection of advanced irrigation orders by irrigators due to rainfall on their properties meaning this previously requested water goes unutilised. This paper investigates the causes of unutilised irrigation orders (UIO) and takes a holistic view to investigate the variables affecting unseasonal flooding of the B-MF. It is concluded from this research that unseasonal flooding of the B-MF can be linked to UIO but there are other more significant factors; inflow from Ovens River particularly during December, River Murray flow at Albury and the available airspace in the River Murray at Tocumwal. UIO were found to be linked to the previous day's UIO, rainfall and the advanced order volume placed four days prior.
Author Berrisford, Matthew J
Malano, Hector M
Argent, Robert M
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10.1002/rrr.3450020202
10.1016/S0166-1116(08)71099-9
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10.1002/rra.705
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10.1080/00049158.1986.10674458
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Issue 2
Keywords Irrigation modelling
Barmah-Millewa Forest
Irrigation orders
River Murray
rivers
floods
models
rainfall
Australasia
water supply
rain water
forests
agriculture
surface water
floodplains
irrigation
regulations
water resource management
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PublicationSubtitle An International Journal - Published for the European Water Resources Association (EWRA)
PublicationTitle Water resources management
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Snippet Regulation of river systems has led to the development of irrigated agriculture and other uses of this engineered additional water supply. One of the main...
Causes and consequences of unutilized irrigation orders in the central River Murray area are discussed. Irrigation operations and irrigator behavior are driven...
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StartPage 193
SubjectTerms Agricultural production
Agriculture
Atmospheric Sciences
Barmah-Millewa Forest
Canals
Civil Engineering
Earth and Environmental Science
Earth Sciences
Earth, ocean, space
Engineering and environment geology. Geothermics
Environment
Exact sciences and technology
Floods
Freshwater
Geotechnical Engineering & Applied Earth Sciences
Hydrogeology
Hydrology
Hydrology. Hydrogeology
Hydrology/Water Resources
Irrigation
Irrigation modelling
Irrigation orders
Natural hazards: prediction, damages, etc
Rain
River Murray
Rivers
Seasonal variations
Studies
Water resources
Water resources management
Water supply
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Title Causes and Consequences of Unutilised Irrigation Orders in the Central River Murray Area
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Volume 23
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