Indian Journal of Soil Conservation
  • Year: 2019
  • Volume: 47
  • Issue: 3

Multi-criteria analytical hierarchical process based decision support system for criticalwatershed prioritization ofAndhiyarkhore catchment

  • Author:
  • Gaurav Singh1,, Ram Mandir Singh2, Surjeet Singh3, Annamalai Ramalingam Senthil Kumar3, Rahul Kumar Jaiswal4, Virendra Kumar Chandola2, Anupam Kumar Nema2
  • Total Page Count: 10
  • Page Number: 263 to 272

1ICAR-Indian Institute of Soil and Water Conservation, Research Centre, Vasad, Anand-388306, Gujarat

2Department of Farm Engineering, Institute of Agricultural Sciences, Banaras Hindu University, Varanasi-221005, Uttar Pradesh

3National Institute of Hydrology (NIH), Roorkee-247667, Uttarakhand

4Central India Hydrology Regional Centre, NIH, WALMI Campus, Bhopal-462015, Madhya Pradesh

*Corresponding author: E-mail: gaurav.bhu09@gmail.com (Gaurav Singh)

Online published on 8 April, 2020.

Abstract

This study presents the application of analytical hierarchical process based multicriteria decision support tool for prioritization of critical areas of Andhiyarkhore catchment for soil and water conservation (SWC) and management works. Fourteen different soil and water management parameters were calculated for each of the fiftyone delineated watersheds in Andhiyarkhore catchment. The normalized values of these parameters were arranged in a comparison matrix to assess corresponding weights to prioritize the watersheds. The average annual soil loss had highest weight of 0.23 and elongation ratio the minimum weight of 0.01 at 9.66% consistency ratio (within 10% limit). The highest priority for the SWC measures was obtained for SW-7 watershed and lowest for SW-47 watershed. The average annual groundwater recharge estimated in the Andhiyarkhore catchment was only 4.13% of average annual rainfall, which envisages need for SWC works in Andhiyarkhore catchment. Nine watersheds having 325.7 km2 of the catchment have very high priority for undertaking SWC works.

Keywords

Groundwater recharge Morphometric analysis Soil loss Sediment yield