Impact assessment of watershed interventions under low rainfall situations in semi-arid Karnataka

Authors

  • A. Raizada National Research Centre on Integrated Farming, Piprakothi-845429, Motihari, Bihar Author
  • R.N. Adhikari National Research Centre on Integrated Farming, Piprakothi-845429, Motihari, Bihar Author
  • S. Kumar National Research Centre on Integrated Farming, Piprakothi-845429, Motihari, Bihar Author
  • S.L. Patil National Research Centre on Integrated Farming, Piprakothi-845429, Motihari, Bihar Author
  • D. Ramajayam Directorate of Oil Palm Research, Pedavegi Author
  • M. Prabhavathi ICAR-Indian Institute of Soil and Water Conservation (IISWC), Research Centre, Bellary, Karnataka Author
  • N. Loganandhan KVK, IIHR, Tumkur Author
  • B. Mondal ICAR-Central Rice Research Institute, Cuttack. Author
  • W. Muralidhar ICAR-Indian Institute of Soil and Water Conservation (IISWC), Research Centre, Bellary, Karnataka Author

DOI:

https://doi.org/10.53550/

Keywords:

Coping, Economic viability, Ground water quality, Low rainfall, Watershed interventions

Abstract

Impact assessment of an integrated watershed development project located in a low rainfall zone (417 mm) in semi-arid Karnataka was carried out. Rainfall distribution during the project period (2008-15) was erratic with four years out of seven receiving less than normal rainfall which led to changes in cropping patterns. Share of area allocated to maize and sorghum increased by 2.8% and 3%, respectively since these crops provide much needed fodder. Due to in-situ soil moisture conservation practices like bunding, yield of groundnut, sorghum, maize and onions in rainfed areas increased by 19.4, 9, 16 and 2.8%, respectively. Recharge of groundwater due to land based interventions in initial years led to an increase of 320% in number of bore wells and irrigated area increased by 22%, but extraction of water continuously along with low rainfall years led to failure of 75% of bore wells by end of the project period. Water quality also deteriorated over time and concentration of salts (Na+, Mg2+ and HCO -) increased. Direct employment of 3 5998 man days was generated over three years in different activities. Economic analysis indicated that the project was viable even under low rainfall condition and had a B:C ratio of 1.17 with an internal rate of return (IRR) of 11.92% and payback period of 10 years.

References

Adhikari, R.N., Singh, A.K., Math, S.K.N., Raizada, A., Mishra, P.K. and Reddy, K.K. 2013. Augmentation of groundwater recharge and water quality improvement by water harvesting structures in the semi-arid Deccan. Curr. Sci., 104(11): 1534-1542.

Ahluwalia, M.S. 2005. Reducing poverty and hunger in India: The role of agriculture. Annual Report Essay. IFPRI 2004-2005. DOI: http://dx.doi.org/10.2499/0896297519.E02.

APHA. 1995. Standard Methods for Examination of Water and Waste Water. 15th Edition. American Pub, Health Association, Washington, DC.

Arya, S.L., Kaushal, R.C. and Grewal, S.S. 1994. Economic viability of watershed management project selected to rehabilitate degraded Arvalli foothills of Haryana. Ind. J. Agric. Econ., 49(4):591-600.

Ashalatha, K.V., Munisamy, G. and Bhatt, A.R.S. 2012. Impact of climate change on rainfed agriculture in India: A case study of Dharwad. Intl. J. Environ. Sci. Dev., 3(4): 368-371.

Badiger, R., Lokesha, H., Hugar, L.B., Nemichandrappa, M. and Reddy, B.S. 2016. Impact of rainwater harvesting on farm income in northern Karnataka - An economic analysis. Indian J. Soil Cons., 44(1): 8-12.

Biswas, H., Raizada, A., Kumar, S., Prabhavathi, M. and Mohan Kumar, P. 2017. Impact of deficit rainfall coupled with high groundwater exploitation on water quality in semi-arid region of Karnataka. Indian J. Soil Cons., 45(1): 60-65.

Dhyani, B.L., Raizada, A., Ghosh, B.N. and Juyal, G.P. 2009. Impact of technology extension on land use changes, food security and economic prosperity in a Central Himalayan watershed. Indian J. Soil Cons., 37(2): 133-143.

Government of India. 1994 Report of the Technical Committee on Drought Prone Areas Programme and Desert Development Programme, Ministry of Rural Development, New Delhi, 73 p.

Grewal, S.S. 2016. Impact of rainwater harvesting on ground water recharge in water stressed Arvalli hill ecosystem. Indian J. Soil Cons., 44(2): 141-148.

Jat, M.L., Mahela, M.K., Dadhich, S.K., Sharma, R.K., Punam Mhetre and Dashora, R. 2016. Economic feasibility of refinement or renovation of a water harvesting structure (Nadi) - A success story. Indian J. Soil Cons., 44(1): 87-92.

Joshi, P.K., Jha, A.K., Wani, S.P., Joshi, Laxman and Shiyani, R.L. 2005. Meta-analysis to Assess Impact of Watershed Program and People's Participation. Research Report 8, Comprehensive Assessment of Watershed Management in Agriculture. International Crops Research Institute for the Semi-arid Tropics and Asian Development Bank, 21p.

Kumar, S., Raizada, A. and Biswas, H. 2014. Prioritizing development planning in the Indian semi-arid Deccan using sustainable livelihood security index approach. Intl. J. Sustain. Dev. World Ecol., 21(4): 332-345.

Kumar, S., Raizada, A., Biswas, H., Srinivas, S. and Mondal, B. 2016. Assessment of vulnerability to climate change: A case study of Karnataka. Indian J. Soil Cons., 44(3): 314-320.

Maji, A.K., Obi Reddy, G.P. and Sarkar, Dipak. 2010. Degraded and Wastelands of India Status and Spatial Distribution. ICAR & NAAS, New Delhi, 167 p.

NRAA. 2012. Prioritization of Rainfed Areas in India. Study Report 4, NRAA, New Delhi.

Prabhavathi, M., Patil, S.L. and Raizada, A. 2013. Assessment of soil fertility status for sustainable crop production in a watershed of the semi-arid tropics in Southern India. Indian J. Soil Cons., 41(2): 151-157.

Ram Babu, Dhyani, B.L., Agarwal, M.C. and Samra, J.S. 1997. Economic Evaluation of Watershed Management Projects. Bulletin No. T-33/D-23, CSWCRTI, Dehradun, 83 p.

Rockstrom, J. and Falkenmark, M. 2000. Semi-arid crop production from a hydrological perspective - gap between potential and actual yields. Crit. Rev. Plant Sci., 19(4):319-346.

Saxena, M.M. 1990 Environmental Analysis of Water, Soil and Air. Agrobotanical Publication, India, pp 1-16.

Sharma, B.R., Rao, K.V., Vittal, K.P.R., Ramakrishna, Y.S. and Amarasinghe, U. 2010. Estimating the potential of rainfed agriculture in India: Prospects for water productivity improvements. Agric. Water Manag, 97: 23-30.

Shivamurthy, N., Eswarappa, G. and Swaroop, N.N. 2006. Impact of watershed treatment on groundwater recharge in Southern India-An analysis. In: Proc. of the 14th International Soil Conservation Organization Conference (ISCO) - Water Management and Soil Conservation in Semi-Arid Environments. Marrakech, Morocco. Venkateswarlu, B. and Prasad, J.V.N.S. 2012. Carrying capacity of Indian agriculture: issues related to rainfed agriculture. Curr. Sci., 1026: 882-888.

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Published

2025-12-23

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How to Cite

Impact assessment of watershed interventions under low rainfall situations in semi-arid Karnataka. (2025). Indian Journal of Soil Conservation, 46(2), 261-271. https://doi.org/10.53550/

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