Journal of Water and Climate Change · 2015 · 16 citations · 24 references
EngineeringClimate Change ImpactLand DegradationHydrogeologic SystemEarth ScienceIrrigation ManagementAgricultural Water ManagementRoot-zone Water BalanceGroundwater WithdrawalClimate ChangeHydrometeorologyAgricultural ResilienceGeographyCrop Water RelationIrrigationGroundwater LevelsA1b ScenarioHydrologyIndian Central PunjabWater BalanceClimatologyAgricultural ModelingGroundwater ManagementCrop Modelling
The present study employs regional climate model projections for assessing the impact of root-zone water balance and groundwater levels using crop and groundwater models. The projections from Hadley Regional Model 3 (HRM3) for A1B scenario showed an increase in temperature and rainfall (RF) of 1.8 °C and 328 mm, respectively, during mid-century (MC) (2021–2050) for Indian central Punjab. The respective increase in values for the end of century (2071–2098) would be 4.4 °C and 486 mm, compared with present time slice (PTS) (2000–2010). In future, irrigation requirement would reduce, because of increased RF and decreased transpiration from cropped area owing to a shortening of crop duration of rice-wheat cropping system with temperature. The reduced irrigation need in future would decrease groundwater withdrawal resulting in the rise of groundwater level.
24
Christopher B. Field, Vicente Barros, Michael D. Mastrandrea et al. · Queensland's institutional digital repository (The University of Queensland) · 2014 · 6K citations
Satellite-based estimates of groundwater depletion in India
Matthew Rodell, I. Velicogna, J. S. Famiglietti · Nature · 2009 · 2.8K citations · Full text
Jacob Bear · Journal of Hydrology · 1981 · 1.2K citations