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- W2198565060 abstract "Numerical modelling of ground water flow provides Resource Managers with tools to better understand the various hydrological processes in a ground water system. The ground water resource management in Queensland is done on a regional scale and, in order to develop a well calibrated regional ground water management model, it is necessary to incorporate all the regional hydrologic processes in the system. The methods involved in considering the full range of complex interacting hydrological processes operating on a system are tedious and expensive. A lumped parameter model SPLASH (Soil, PLAnt Salinity and recHarge) has been developed for simulating the temporal behaviour of moisture in the plant root zone and in the unsaturated zone below the root zone on a regional scale. A regional ground water management model has been developed for the Burdekin River Irrigation Area. An industry standard MODFLOW package has been used to relate the ground water level response to the recharge and the ground water use. The complicated nature and the variability of the soil water processes are included in the SPLASH model by dividing the model area into zones which represent unique combinations of land use, soil type, top clay thickness and flood conditions. Transient recharge and ground water use have been simulated using a calibrated SPLASH model. The transient MODFLOW model has been calibrated for the period 1981-1994 replicating the historical ground water level response and the model has also been validated for the period 1994-1995. This model is to be used as a water management tool for allocating water on an annual basis, identifying an optimal combination of water sources, identifying supply shortfalls and identifying opportunities for additional sources of water which would otherwise be wasted or cause environmental problems." @default.
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- W2198565060 date "1999-01-01" @default.
- W2198565060 modified "2023-09-27" @default.
- W2198565060 title "A Practical Approach to Include Regional Soil Water Processes in Groundwater Flow Modelling" @default.
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