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Implications of Watershed Management Programs for Sustainable Development in Rural Scenario—A Case Study from Foothills of Punjab State, India

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Abstract

Watershed management programs (WMP) are widely adopted across the globe for judicious use of natural resources. It can help us to achieve UN sustainable goals by 2030 also in a sytematic way. These programs help in preserving environmental and ecological balance by maintaining the natural and anthropogenic pressures in the watershed. WMPs have enabled sustainable management in typical rural scenarios where land degradation is predominant at an alarming rate due to intensive agricultural cum anthropogenic activities. A huge amount of central and state government funds have been utilized for construction of check dams, silt detention structures, gabion structures, afforestation schemes, capacity building programs for rural lively hoods, etc. to elevate the region from the poverty line. This necessitates for monitoring of these activities; and the present study demonstrates use of geospatial technology in monitoring effects of WMPs in the rural landscape of Punjab, India. High-resolution satellite images were used for monitoring the conservation measures at grass root level and analyzing the implications in the region. Field investigation and growth in net productivity of the region also clearly indicated that there is significant improvement in the selected watershed due to augmentation of the conservation measures, infrastructure facilities, and socio-economic conditions.

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Data Availability

The datasets generated or analyzed during the study are available from the corresponding author on a reasonable research request.

References

  1. Singh C, Solomon D, Bendapudi R, Kuchimanchi B, Iyer S, Bazaz A (2019) What shapes vulnerability and risk management in semi-arid India? Moving towards anagenda of sustainable adaptation. Environ Dev 30:35–50. https://doi.org/10.1016/j.envdev.2019.04.007

    Article  Google Scholar 

  2. Chikwanha OC, Mupfiga S, Olagbegi BR, Katiyatiya CL, Molotsi AH, Abiodun BJ, Dzama K, Mapiye C (2021) Impact of water scarcity on dryland sheep meat production and quality: key recovery and resilience strategies. J Arid Environ 190:104511

    Article  Google Scholar 

  3. Vollset SE, Goren E, Yuan CW, Cao J, Smith AE, Hsiao T, Bisignano C, Azhar GS, Castro E, Chalek J, Dolgert AJ (2020) Fertility, mortality, migration, and population scenarios for 195 countries and territories from 2017 to 2100: a forecasting analysis for the Global Burden of Disease Study. The Lancet 396(10258):1285–1306

    Article  Google Scholar 

  4. Dev I, Singh R, Garg KK, Ram A, Singh D, Kumar N, Dhyani SK, Singh A, Anantha KH, Akuraju V, Dixit S (2022) Transforming livestock productivity through watershed interventions: a case study of Parasai-Sindh watershed in Bundelkhand region of Central India. Agric Syst 196:103346

    Article  Google Scholar 

  5. Kumar V, Mishra N (2021) Sustainable watering of the watershed: a qualitative analysis of the Choral River Revival Project in Narmada Basin, India. Dev Pract 1–12. https://doi.org/10.1080/09614524.2021.1958164

  6. Garg KK, Anantha KH, Nune R, Akuraju VR, Singh P, Gumma MK, Dixit S, Ragab R (2020) Impact of land use changes and management practices on groundwater resources in Kolar district, Southern India. J Hydrol: Regional Studies 31:100732

    Google Scholar 

  7. Jain P, Ramsankaran RAAJ (2019) GIS-based integrated multi-criteria modelling framework for watershed prioritisation in India—a demonstration in Marol watershed. J Hydrol 578:124131

    Article  Google Scholar 

  8. Karlen DL, De M, McDaniel MD and Stott DE (2021) Evolution of the soil health movement. Soil Health Series: Volume 1 Approaches to Soil Health Analysis, pp.21–48

  9. Sur K, Chauhan P (2019) Dynamic trend of land degradation/restoration along Indira Gandhi Canal command area in Jaisalmer District, Rajasthan, India: a case study. Environ Earth Sci 78(15):1–11

    Article  CAS  Google Scholar 

  10. Meng S, Huang Q, Zhang L, He C, Inostroza L, Bai Y, Yin D (2020) Matches and mismatches between the supply of and demand for cultural ecosystem services in rapidly urbanizing watersheds: a case study in the Guanting Reservoir basin China. Ecosystem Services 45:101156

    Article  Google Scholar 

  11. Thakkar AK, Desai VR, Patel A, Potdar MB (2017) Impact assessment of watershed management programmes on land use/land cover dynamics using remote sensing and GIS. Remote Sensing Appl: Soc Environ 5:1–15

    Google Scholar 

  12. Wani SP and Garg KK (2018) Improving water use in tropical rain-fed systems: the situation in India Crops Research Institute for the Semi-Arid Tropics (ICRISAT), India. In Water management for sustainable agriculture (pp. 443–464). Burleigh Dodds Science Publishing

  13. Chowdhury K, Behera B (2022) Institutional dynamics and water resource management: the case of traditional water bodies in West Bengal, India. Int J Water Resour Dev 38(5):836–860

    Article  Google Scholar 

  14. Wani SP, Sreedevi TK, Vamsidhar Reddy TS, Venkateshvarlu B, Shambhu Prasad C (2008) Community watersheds for improved livelihoods through consortium approach in drought prone rainfed areas. J Hydrol Res Dev 23:55–77

    Google Scholar 

  15. Chowdhury AR and Rajhans SK (2021) Revisiting Wittfogel: “hydraulic society” in colonial India and its post-colonial legacies in hydropower management. In Theory, Policy, Practice (pp. 123–140). Routledge India

  16. Pani A, Ghatak I, Mishra P (2021) Understanding the water conservation and management in India: an integrated study. Sustain Water Resour Manag 7(5):1–16

    Article  Google Scholar 

  17. Patnaik U, Das PK, Bahinipati CS (2019) Development interventions, adaptation decisions and farmers’ well-being: evidence from drought-prone households in rural India. Clim Dev 11(4):302–318

    Article  Google Scholar 

  18. Mwinjaka O, Joyeeta G, Bresser T (2010) Adaptation strategies of the poorest farmers in drought-prone Gujarat. Clim Dev 2(4):346–363

    Article  Google Scholar 

  19. Reddy Suraj R, Rajashekar G, Jha CS, Dadhwal VK, Pelissier R, Couteron P (2017) Estimation of above ground biomass using texture metrics derived from IRS Cartosat-1 panchromatic data in evergreen forests of Western Ghats, India. J Indian Soc Remote Sensing 45(4):657–665

    Article  Google Scholar 

  20. Reddy V (2017) Ratna, Yashpal Singh Saharawat, and Biju George “Watershed management in South Asia: a synoptic review.” J Hydrol 551:4–13

    Article  Google Scholar 

  21. Sivakumar MV, Vittal KP, and Eslamian S (2021) “Indian experiences in water harvesting systems.” Handbook Water Harvesting Conserv: Case Stud Appl Examples 325–339

  22. Shankar Ram NR, Sharma, Mirza K, Goyal A, Chowdary VM, and Jha CS (2022) “Multi-criteria based land and water resource development planning using geospatial technologies.” In Geospatial Technologies for Land and Water Resources Management, pp. 103–123. Springer, Cham

  23. Bhardwaj P, Sharma T, Singh O (2021) Impact evaluation of watershed management programmes in Siwalik Himalayas of Haryana, India. Environ Dev Sustain 23(4):5251–5276

    Article  Google Scholar 

  24. Saxena NC (1999) Foreword. In J. Farrington, C. Turton, & A. J. James (Eds.), Participatory watershed development: challenges for the twenty frst century. Oxford: University Press

  25. Singh S, Sur K, Verma VK, Pateriya B (2022) Quantitative assessment of channel planform dynamics across Satluj River in North India over 45 years: analysis using geospatial techniques. Water Conserv Sci Eng 1–12. https://doi.org/10.1007/s41101-022-00154-z

  26. Singh K, Sandhu HS, Singh N and Kumar B (1993) Kandi watershed development project: a critical evaluation. Econ Political Weekly 28(52):A122–A128 (7 Pages)

  27. Yadav RP, Panwar P, Arya SL, Mishra PK (2015) Revisit of Shivalik region in diferent states of northwestern India. J Geol Soc India 86:351–360

    Article  Google Scholar 

  28. Gupta RP (2018). Important spaceborne missions and multispectral sensors. In Remote Sensing Geology (pp. 61–86). Springer, Berlin, Heidelberg

  29. Gray P (2006) Famine and land in Ireland and India, 1845–1880: James Caird and the political economy of hunger. Hist J 49(1):193–215

    Article  Google Scholar 

  30. Jalan S, Sokhi BS (2012) Comparison of different pan-sharpening methods for spectral characteristic preservation: multi-temporal CARTOSAT-1 and IRS-P6 LISS-IV imagery. Int J Remote Sens 33(18):5629–5643

    Article  Google Scholar 

  31. Joshi PK, Gairola S (2004) Land cover dynamics in Garhwal Himalayas—a case study of balkhila sub-watershed. J Indian Soc Remote Sensing 32(2):199

    Article  Google Scholar 

  32. Omernik JM, Bailey RG (1997) Distinguishing between watersheds and ecoregions 1. JAWRA J Am Water Resour Assoc 33(5):935–949

    Article  Google Scholar 

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Acknowledgements

Special thanks to NRSC, Hyderabad, for providing the satellite data, as a part of the national project being executed over the entire country.

Funding

NRSC, Hyderabad, funded a research fellow.

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Authors

Contributions

A. Birinder Kaur—analyzed the data.

B. Dr. Koyel Sur—wrote the first draft of the manuscript and helped in the analysis.

C. Dr. Vipan Kumar Verma—finalized the draft manuscript and guided.

D. Dr. Brijendra Pateriya—overall guidance.

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Correspondence to Koyel Sur.

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Kaur, B., Sur, K., Verma, V.K. et al. Implications of Watershed Management Programs for Sustainable Development in Rural Scenario—A Case Study from Foothills of Punjab State, India. Water Conserv Sci Eng 7, 647–655 (2022). https://doi.org/10.1007/s41101-022-00170-z

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