A statistical model has been developed to forecast domestic water demand by considering climate change, population growth, urbanization, lifestyle changes and technological advances. The developed model is used to forecast future domestic water demand in different sub-basins of Huaihe River Basin of China. The study reveals that mean temperature in Huaihe River Basin will increase by 0.7–1.6 °C, population will reach to 230 million, and 61.2% of the basin area will be urbanized by the year 2030, which will cause a sharp increase in domestic water demand. The increase in domestic water demand for 1 °C increase in mean temperature is found to vary between 0.549 × 108 and 5.759 × 108 m3 for different sub-basins of Huaihe River. The forecasted ...
Water shortage is a limiting factor for agricultural production in China, and climate change will af...
Climate change as a result of the increased greenhouse gas emissions may influence the availability ...
An assessment of the impact of climate change on regional hydrological processes is vital for effect...
A statistical model has been developed for forecasting domestic water demand in Haihe river basin o...
A framework is proposed for forecasting industrial water demand in the context of climate change, ec...
The objective of the paper is to assess the impacts of climate change, population growth and economi...
We present a methodology for using a domestic water use time series that were obtained from Yellow R...
Beijing, a megacity in northern China, has been long facing the challenge of water scarcity, and the...
The Huaihe river basin, located in the transitional area of the humid zone to the semi arid zone, is...
This paper presents a detailed analysis of how future climate change may affect water availability i...
The medium and long-term demand prediction for water resources is critical to the country’s macro-al...
This paper presents a detailed analysis of how future climate change may affect water availability i...
Water scarcity in China would possibly be aggravated by rapid increase in water demand for irrigatio...
Research on climate change impacts and related adaptation to water demand is still very limited. A r...
Climate change, population growth, the development of industrialization and urbanization are increas...
Water shortage is a limiting factor for agricultural production in China, and climate change will af...
Climate change as a result of the increased greenhouse gas emissions may influence the availability ...
An assessment of the impact of climate change on regional hydrological processes is vital for effect...
A statistical model has been developed for forecasting domestic water demand in Haihe river basin o...
A framework is proposed for forecasting industrial water demand in the context of climate change, ec...
The objective of the paper is to assess the impacts of climate change, population growth and economi...
We present a methodology for using a domestic water use time series that were obtained from Yellow R...
Beijing, a megacity in northern China, has been long facing the challenge of water scarcity, and the...
The Huaihe river basin, located in the transitional area of the humid zone to the semi arid zone, is...
This paper presents a detailed analysis of how future climate change may affect water availability i...
The medium and long-term demand prediction for water resources is critical to the country’s macro-al...
This paper presents a detailed analysis of how future climate change may affect water availability i...
Water scarcity in China would possibly be aggravated by rapid increase in water demand for irrigatio...
Research on climate change impacts and related adaptation to water demand is still very limited. A r...
Climate change, population growth, the development of industrialization and urbanization are increas...
Water shortage is a limiting factor for agricultural production in China, and climate change will af...
Climate change as a result of the increased greenhouse gas emissions may influence the availability ...
An assessment of the impact of climate change on regional hydrological processes is vital for effect...