LEADER 05875nam 22008175 450 001 9910983313503321 005 20250202115223.0 010 $a9783031765322 010 $a303176532X 024 7 $a10.1007/978-3-031-76532-2 035 $a(CKB)37447640700041 035 $a(MiAaPQ)EBC31897099 035 $a(Au-PeEL)EBL31897099 035 $a(OCoLC)1496392828 035 $a(DE-He213)978-3-031-76532-2 035 $a(EXLCZ)9937447640700041 100 $a20250202d2025 u| 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aNavigating the Nexus $eHydrology, Agriculture, Pollution and Climate Change, Volume 1 /$fedited by Aliva Nanda, Pankaj Kumar Gupta, Vivek Gupta, Prakash Kumar Jha, Swatantra Kumar Dubey 205 $a1st ed. 2025. 210 1$aCham :$cSpringer Nature Switzerland :$cImprint: Springer,$d2025. 215 $a1 online resource (635 pages) 225 1 $aWater Science and Technology Library,$x1872-4663 ;$v102 311 08$a9783031765315 311 08$a3031765311 327 $aSection I. Hydrology of the headwater catchments in changing climatic conditions -- Chapter 1. Shift in streamflow regime in headwater catchments causes and impacts -- Chapter 2. Hydrology of the Upper Indus Basin under changing climate -- Chapter 3. The Open Global Glacier Model (OGGM) based assessment of Glacier Mass Variations in Chhota Shigri Glacier, Western Indian Himalaya -- Chapter 4. Insight into the Impact of Land Use/Land Cover Change on the runoff incorporating hydrological modelling to analyse their impact on the water regime -- Section 2. Efficient irrigation and agricultural planning for food security -- Chapter 5. Divulging insights into irrigation scheduling of Allium Cepa (Onion) using Cocos Nucifera (Coconut) husk mulch -- Chapter 6. Impact of Climatic Extreme Indices on Crop Productivity -- Chapter 7. Pathways to accelerate agricultural production system technologies in India: A vision for new generation watersheds -- Chapter 8. Analyzing the Impact of Climate Change on Crop Yield and Its Consequences for the Water-Energy-Food Nexus in an Indian River Basin -- Section 3. Hydro-chemical environment under climate change -- Chapter 9. Impacts of modern agricultural practices on soil-water pollution: An overview -- Chapter 10. Engineered bioremediation for decontamination of aquifers -- Chapter 11. Groundwater remediation using Meshless Local Petrov Galerkin (MLPG) simulation coupled with Differential Evolution (DE) -- Chapter 12. Transport of Nitrate, Phosphate and Potassium in Vadoze zone with Varying Rainfall Scenarios for a Semi-Arid Cotton Growing Region of South India -- Chapter 13. Evaluation of potentially toxic heavy metal 3 contamination of groundwater and associated health risk assessment of inhabitants in the industrial corridors of integrated Vellore district, Tamil Nadu, India -- Section 4. Advanced tools and techniques to provide climate solutions -- Chapter 14. Assessing the Impacts of Climate Change on Hydroclimatic Regimes in Beas River Basin -- Chapter 15. Precision Agriculture Technologies for Climate-Resiliency and Water Resource Management -- Chapter 16. Hydrometeorological Water Budget and It?s Relationship with Extreme Over Alaknanda River Basin: An Application of ERA5-Land -- Chapter 17. Bayesian model averaging for multi-model ensemble streamflows of the Godavari basin -- Section 5. Socio-hydrological Impacts and Policy Implications in a Changing Climate -- Chater 18. Application of AI/ML in Water Resource Management to Resolve Transboundary Water Conflict -- Chapter 19. Small-scale irrigation for climate adaptation: community and shared-based approaches in South Asia and sub-Saharan Africa -- Chapter 20. A hydrologic modeling assessment of future water scarcity in the Baitarani River Basin -- Chapter 21. Summary Chapter. 330 $aThis book encompasses updated information as well as future directions for researchers working in the fields of environmental science, water resource engineering, and agricultural science. Navigating the Nexus: Hydrology, Agriculture, Pollution, and Climate Change focuses on the thematic areas of water resource, agriculture, and environmental domains. This book covers advances in modelling approaches, including Machine Learning (ML)/Artificial Intelligence (AI) applications; GIS and remote sensing; and sensors; to provide hydrological, agricultural, and environmental solutions during the ongoing climate crisis. 410 0$aWater Science and Technology Library,$x1872-4663 ;$v102 606 $aWater 606 $aHydrology 606 $aAgriculture 606 $aPollution 606 $aClimatology 606 $aEnvironmental management 606 $aArtificial intelligence 606 $aWater 606 $aAgriculture 606 $aPollution 606 $aClimate Sciences 606 $aEnvironmental Management 606 $aArtificial Intelligence 615 0$aWater. 615 0$aHydrology. 615 0$aAgriculture. 615 0$aPollution. 615 0$aClimatology. 615 0$aEnvironmental management. 615 0$aArtificial intelligence. 615 14$aWater. 615 24$aAgriculture. 615 24$aPollution. 615 24$aClimate Sciences. 615 24$aEnvironmental Management. 615 24$aArtificial Intelligence. 676 $a551.48 700 $aNanda$b Aliva$01784706 701 $aGupta$b Pankaj Kumar$01784707 701 $aGupta$b Vivek$01744212 701 $aJha$b Prakash Kumar$01784708 701 $aDubey$b Swatantra Kumar$01784709 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910983313503321 996 $aNavigating the Nexus$94316293 997 $aUNINA