Soil Moisture, Reservoir, and Groundwater Interactions: Managing Water Sustainability in South Singbhum
Ashis Chandra Pathy, Jyotirmayee Mohanta
Asian Journal of Geological Research · pp. 342–361 · Published 16 Aug 2025
10.9734/ajoger/2025/v8i2203Abstract
Background: The South Singbhum region is dependent on reservoirs and groundwater for agricultural, domestic, and industrial utility. However, considerable changes in water storage and utilization patterns present obstacles to long-term water management. Aims: This research examines the groundwater, surface water and soil moisture data and recommend measures for ensuring equitable and long-term water resource sustainability in the region. Study Design: This study uses a quantitative research design to analyze reservoir storage, groundwater utilization and soil moisture data from the South Singbhum region during a two-year timeframe. Statistical and comparative tools are used to figure out patterns, fluctuations, and stress zones in water resources, shedding information on the region's water management concerns and potential solutions. Place and Duration of Study: South Singhbhum Craton region in Odisha is extended between latitude to and longitude to . The area spread over on 45 blocks of Eight district in Odisha. Methodology: It entails gathering monthly data on reservoir storage levels, soil moisture and groundwater consumption from several areas in the South Singbhum region, followed by statistical analysis to determine trends and changes. Also, the study assesses the effects of various water management strategies across districts and their consequences for sustainable water usage through comparative analysis. Results: The findings show large changes in water storage across the Baitarani (Salandi), Baitarani-Brahmani, and Brahmani (Rengali) reservoirs, with noticeable seasonal declines, particularly in early 2021. Groundwater consumption varies greatly between districts, with some areas relying heavily on groundwater for irrigation and others having more balanced usage patterns. The soil moisture data from the three basins showed consistent seasonal peaks during the monsoon months, with the highest moisture levels in August and September, and notable decreases in the dry months These findings emphasize the importance of adapted water management techniques to address both storage variations and groundwater sustainability in the region. Conclusion: The South Singbhum region has major issues in water resource management because to variations in reservoir storage and groundwater utilization among districts. To maintain long-term water supply, it is critical to develop effective water management measures such as enhanced irrigation infrastructure and groundwater recharge methods. Future research should focus on improving prediction models and mitigating the effects of climate change on water supplies.
Cited by 1
1 citation reported by external sources — individual citing-article records aren't available to list yet.
Related research
- Aerobic Biodegradation of Petroleum Hydrocarbons in Laboratory Contaminated Groundwater — shares topic coverage
- Impact of Extreme Floods on Groundwater Quality (in Pakistan) — shares topic coverage
- Simulating the Impact of Drought on California’s Central Valley Hydrology, Groundwater and Cropping — shares topic coverage
- Watershed Modeling of Surface Water-Groundwater Interaction under Projected Climate Change and Water Management in the Haihe River Basin, China — shares topic coverage
- Efficacy of Fuzzy c-Means Cluster Analysis of Naturally Occurring Radioisotope Datasets for Improved Groundwater Resource Management under the Continued Risk of Climate Change — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
1
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.