This paper presents an assessment of the impacts of future climate changes on the hydrological characteristics of Harvey River catchment in Western Australia. A conceptual lumped-parameter rainfall-runoff model (HBV model) is used to simulate the catchment hydrological behaviour. Daily observations of rainfall, temperature and discharge and monthly mean potential evapotranspiration from the hydro-meteorological stations within the catchment were used to calibrate and validate the HBV model. The calibrated model was then forced by the downscaled future rainfall and temperature to simulate the daily discharge at the catchment outlet for the mid (2046-2065) and late (2080-2099) of the 21st century. Future climate signals were extracted from a ...
Climate changes, especially its impacts on temperature, precipitation and evaporation, have large ef...
ii There is growing evidence that the Earth’s climate is changing as a result of natural variability...
Climate change affects natural systems, leading to increased acceleration of global water cycle and ...
Climate change is likely to impact the Australian continent by changing the trends of rainfall, incr...
© 2019 Inderscience Enterprises Ltd. The future climate-change impacts on streamflow variability at ...
This study evaluated the impacts of future climate change on the hydrological response of the Richmo...
The conceptual rainfall–runoff (HBV model) is applied to evaluate impacts of future climate changes ...
This study assesses the impacts of long-term climate change on catchment hydrology and the potential...
The application of two distinctively different hydrologic models, (conceptual-HBV) and (distributed-...
This study aimed to model current and future streamflow reduction due to climate change in theMurray...
Climate change, a harsh reality of modern civilization, has significant impact on water resources. G...
Copyright © 2019 Inderscience Enterprises Ltd. A physically-based distributed hydrological model (BT...
A rigorous evaluation of future hydro-climatic changes is necessary for developing climate adaptatio...
Abstract. The effects of climate change due to increasing atmospheric CO2 on the major tributaries t...
Hydrological projections are essential for the development of climate change adaptation strategies i...
Climate changes, especially its impacts on temperature, precipitation and evaporation, have large ef...
ii There is growing evidence that the Earth’s climate is changing as a result of natural variability...
Climate change affects natural systems, leading to increased acceleration of global water cycle and ...
Climate change is likely to impact the Australian continent by changing the trends of rainfall, incr...
© 2019 Inderscience Enterprises Ltd. The future climate-change impacts on streamflow variability at ...
This study evaluated the impacts of future climate change on the hydrological response of the Richmo...
The conceptual rainfall–runoff (HBV model) is applied to evaluate impacts of future climate changes ...
This study assesses the impacts of long-term climate change on catchment hydrology and the potential...
The application of two distinctively different hydrologic models, (conceptual-HBV) and (distributed-...
This study aimed to model current and future streamflow reduction due to climate change in theMurray...
Climate change, a harsh reality of modern civilization, has significant impact on water resources. G...
Copyright © 2019 Inderscience Enterprises Ltd. A physically-based distributed hydrological model (BT...
A rigorous evaluation of future hydro-climatic changes is necessary for developing climate adaptatio...
Abstract. The effects of climate change due to increasing atmospheric CO2 on the major tributaries t...
Hydrological projections are essential for the development of climate change adaptation strategies i...
Climate changes, especially its impacts on temperature, precipitation and evaporation, have large ef...
ii There is growing evidence that the Earth’s climate is changing as a result of natural variability...
Climate change affects natural systems, leading to increased acceleration of global water cycle and ...