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Hydrological-drainage analysis in watershed-programme planning: a case from the Deccan basalt, India

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Abstract

Watershed development in India is being adopted increasingly as an integrated mechanism of addressing ecological concerns, particularly in dryland areas. Increasing groundwater recharge constitutes one of the principal objectives of watershed-development programmes because many parts of India face acute shortages of groundwater resources on which rural livelihood depends. A combination of hydrogeological mapping and drainage analysis can form an important tool for planning of watershed-development programmes. Studies on the Kurzadi watershed from the Deccan volcanic province in west-central India illustrate how this technique is useful in selecting sites for artificial recharge of groundwater.

The Kurzadi river basin includes three third-order sub-basins that are compared for relative variability in surface-material permeability. Domains of high surface permeability typically indicate relatively higher length ratios and lower drainage density and stream frequency. In the Kurzadi watershed, drainage parameters reveal areas for recharge-related measures and areas where surface-water augmentation measures can be undertaken, even on lower, second-order streams.

Résumé

En Inde, la mise en valeur de bassins versants est en train d'être pris en compte de plus en plus comme un mécanisme intégrateur de problèmes concernant l'écologie, en particulier dans les régions sèches. L'accroissement de la recharge des nappes constitue l'un des principaux objectifs des programmes de mise en valeur des bassins versants, parce que de nombreuses régions de l'Inde doivent faire face à une grave pénurie de ressources en eau souterraine, dont dépendent les moyens d'existence en zones rurales. Une combinaison de cartographie hydrogéologique et d'analyse du drainage peut constituer un outil important de planification des programmes de développement des bassins. Des études sur le bassin de Kurzadi, dans la province volcanique du Deccan, dans le centre-ouest de l'Inde, illustre combien cette technique est utile pour décider des sites de recharge artificielle de nappe.

Le bassin de la rivière Kurzadi est formé de trois sous-bassins de troisième ordre dont on a comparé la variabilité relative de la perméabilité de surface. Des domaines de forte perméabilité de surface dénotent bien des rapports de longueurs relativement plus forts et une densité de drainage et une fréquence de cours d'eau plus faibles. Dans le bassin de la rivière Kurzadi, les paramètres du drainage révèlent des zones convenant à des mesures relatives à la recharge et des zones où des mesures d'augmentation de l'eau de surface peuvent être entreprises, même sur des cours d'eau plus petits, de second ordre.

Resumen

En la India, se está adoptando el desarrollo de cuenca de forma creciente como un mecanismo integrado para abordar las inquietudes ecológicas, particularmente en zonas áridas. El aumento de la recarga a los acuíferos constituye uno de los objetivos principales de los programas de desarrollo de cuenca, porque muchas zonas de la India deben afrontar períodos acusados de escasez de recursos de aguas subterráneas, de los que dependen los asentamientos rurales. La combinación de cartografía hidrogeológico y de análisis del drenaje puede significar una herramienta importante para la planificación de los programas de desarrollo de cuenca. Los estudios efectuados en la cuenca de Kurzadi, en la Provincia Volcánica de Deccan (región central-occidental de India) ilustran la utilidad de esta técnica con el objeto de seleccionar emplazamientos adecuados para la recarga artificial de acuíferos.

La cuenca del río Kurzidi incluye tres subcuencas de tercer orden que han sido comparadas con respecto a la variabilidad relativa de la permeabilidad en superficie. Los dominios de alta permeabilidad superficial son indicadores típicos de relaciones de longitud relativamente mayores y de menor densidad de drenaje y frecuencia de curso fluvial. En la cuenca de Kurzadi, los parámetros de drenaje revelan áreas de medidas relacionadas con la recarga y áreas en las que se puede emprender medidas de aumento de agua superficial, incluso en cursos fluviales menores, de segundo orden.

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References

  • Davis SN, Dewiest RJM (1966) Hydrogeology. Wiley, New York, 463 pp

  • Fetter CW Jr (1980) Applied hydrogeology. Charles E. Merril, USA, 488 pp

  • Horton RE (1932) Drainage basin characteristics. Trans Am Geophys Union 13:350–361

    Google Scholar 

  • Horton RE (1945) Erosional development of streams and their drainage basins: hydrophysical approach to quantitative morphology. Bull Geol Soc Am 56:275–370

    Google Scholar 

  • Kulkarni H (1998) Watershed development and management – a movement seeking inputs in earth sciences. J Geol Soc India 52(2):239–241

    Google Scholar 

  • Kulkarni H, Deolankar SB (1989) Acquisition of hydrogeologic data for mapping of shallow Deccan basaltic aquifers from Maharashtra, India. IGW-89: International Workshop on Appropriate Methodologies for the Development and Management of Ground Water Resources in Developing Countries 1 (s-2), pp 471–482

  • Kulkarni H, Deolankar SB (1995) Hydrogeological mapping in the Deccan Basalts – an appraisal. J Geol Soc India 46(4):345–352

    Google Scholar 

  • Kulkarni H, Deolankar SB (1997) Dugwell inflows from shallow Deccan basaltic aquifers. J Geol Soc India 49:705–714

    CAS  Google Scholar 

  • Kulkarni H, Deolankar SB, Lalwani A, Joseph B, Pawar S (2000) Hydrogeological framework of Deccan basalt ground water systems, India. Hydrogeol J 8:368–378

    Article  Google Scholar 

  • Ollier CD (1976) Weathering, geomorphology, 2nd edn. Longman, London, 304 pp

  • Schumm SA (1956) Evolution of drainage basins and slopes in Bundland of Perth Amboy-New Jersey. Bull Geol Soc Am 67:597–646

    Google Scholar 

  • Strahler AN (1952) Dynamic basis for geomorphology. Bull Geol Soc Am 63:923–938

    Google Scholar 

  • Strahler AN (1957) Statistical analysis in geomorphic research. J Geol 62:1–25

    Google Scholar 

  • Wisler CO, Brater BF (1959) Hydrology. Wiley, New York, 408 pp

Download references

Acknowledgements

The first author is grateful to the Groundwater Surveys and Development Agency for permitting him to publish this work. The authors acknowledge the Department of Geology, University of Pune, and Advanced Center for Water Resources Development and Management, where the first author conducted the basic work for this study. The authors also acknowledge Dr F. Edwin Harvey and the anonymous referee, for useful suggestions.

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Correspondence to Himanshu Kulkarni.

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Pakhmode, V., Kulkarni, H. & Deolankar, S.B. Hydrological-drainage analysis in watershed-programme planning: a case from the Deccan basalt, India. Hydrogeology Journal 11, 595–604 (2003). https://doi.org/10.1007/s10040-003-0279-z

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