Analysis and Modelling of Water Supply and Demand Under Climate Change, Land Use Transformation and Socio-Economic Development
- The Water Resource Challenge and Adaptation Measures for Urumqi Region, Northwest China
- Format
- Bog, hardback
- Engelsk
- Indgår i serie
Normalpris
Medlemspris
- Du sparer kr. 55,00
- Fri fragt
-
Leveringstid: 2-3 uger (Sendes fra fjernlager) Forventet levering: 20-03-2026
- Kan pakkes ind og sendes som gave
Beskrivelse
Located in a narrow grassland corridor between the semi-desert and a mountain range in Northwest China, the research area Urumqi Region is despite its semi-arid climate in a relatively favourable hydrological situation. The nearby mountains provide water for settlements and agriculture, making human development possible in the first place. Due to the development of agriculture, population and economy during the last sixty years and the increasing water consumption, a demand- and population-driven water scarcity exists today and is expected to aggravate. At the same time, the effects of climate change and land use transformations on the hydrological system and the water availability are uncertain. This study evaluates the recent and future situation by combining a hydrological water balance model for the simulation of the water supply based on scenarios of climate and land use change with a socio-economic model for projecting the future water demand including predicted growth of population and economy.
Detaljer
- SprogEngelsk
- Sidetal243
- Udgivelsesdato08-01-2014
- ISBN139783319016092
- Forlag Springer International Publishing AG
- FormatHardback
Størrelse og vægt
10 cm
Anmeldelser
Vær den første!
Findes i disse kategorier...
- Fagbøger
- Andre fagbøger
- Geofag, geografi og miljøvidenskab
- Geografi
- Fysisk geografi og topografi
- Analysis and Modelling of Water Supply and Demand Under Climate Change, Land Use Transformation and Socio-Economic Development
- Fagbøger
- Andre fagbøger
- Geofag, geografi og miljøvidenskab
- Geovidenskab
- Hydrologi og hydrosfæren
- Analysis and Modelling of Water Supply and Demand Under Climate Change, Land Use Transformation and Socio-Economic Development