Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Soil Erosion Hazard Zonation in Bandu Sub-Watershed, India

View through CrossRef
Abstract Soil hazard zonation in watershed is quite significant to take the necessary actions for soil conservation. The present study attempts to identify soil hazard zones for proper soil conservation and prepare a treatment plan for the Bandu sub-watershed of India through morphometric analysis techniques by giving rank based on priority. The result of the prioritization of eighteen micro-watersheds is entirely satisfactory due to the use of fourteen morphometric parameters. The study quantifies the potential soil loss and identifies the soil eroded zone of the sub-watershed using the universal soil loss equation method and the entire region is categorized into three soil hazard zones with varying degrees. Indian Remote Sensing Satellite data have been used to conduct the whole study. The micro-watershed prioritization has been estimated by applying the composite morphometric value. The micro-watershed having 5.625 composite value ranks first for prioritization (most vulnerable with maximum soil erosion) and having 15.875 composite value ranks last for prioritization (least vulnerable with minimum soil erosion). The result also shows that the soil loss ranges from 0-30 tonne/hectare/year with an average soil loss of 0-10 tonne/hectare/year in maximum areas of the sub-watershed. The soil loss map shows that along the Bandu and in some agricultural fields, the central part of the region is susceptible to soil erosion. The scientific approach of this research could be more effective in maintaining sustainable rural planning. The study can be used as a reference work for determining soil hazard zones in any tropical watershed with high soil loss risk.
Title: Soil Erosion Hazard Zonation in Bandu Sub-Watershed, India
Description:
Abstract Soil hazard zonation in watershed is quite significant to take the necessary actions for soil conservation.
The present study attempts to identify soil hazard zones for proper soil conservation and prepare a treatment plan for the Bandu sub-watershed of India through morphometric analysis techniques by giving rank based on priority.
The result of the prioritization of eighteen micro-watersheds is entirely satisfactory due to the use of fourteen morphometric parameters.
The study quantifies the potential soil loss and identifies the soil eroded zone of the sub-watershed using the universal soil loss equation method and the entire region is categorized into three soil hazard zones with varying degrees.
Indian Remote Sensing Satellite data have been used to conduct the whole study.
The micro-watershed prioritization has been estimated by applying the composite morphometric value.
The micro-watershed having 5.
625 composite value ranks first for prioritization (most vulnerable with maximum soil erosion) and having 15.
875 composite value ranks last for prioritization (least vulnerable with minimum soil erosion).
The result also shows that the soil loss ranges from 0-30 tonne/hectare/year with an average soil loss of 0-10 tonne/hectare/year in maximum areas of the sub-watershed.
The soil loss map shows that along the Bandu and in some agricultural fields, the central part of the region is susceptible to soil erosion.
The scientific approach of this research could be more effective in maintaining sustainable rural planning.
The study can be used as a reference work for determining soil hazard zones in any tropical watershed with high soil loss risk.

Related Results

Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Evaluation of Best Management Practices (BMPs) For WES Conservation in an Agricultural Watershed
Evaluation of Best Management Practices (BMPs) For WES Conservation in an Agricultural Watershed
Implementation of best management practices (BMPs) is essential for conservation of soil and water resources, and for preventing degradation of water related ecosystem services (WE...
Two-dimensional hydrodynamic robust numerical model of soil erosion based on slopes and river basins
Two-dimensional hydrodynamic robust numerical model of soil erosion based on slopes and river basins
<div> <div> <div> <p>Erosion is an important issue in soil science and is related to many environmental problems, such as so...
Environmental Implications of Soil Erosion and Sediment Yield in Lake Hawassa Watershed, South-central Ethiopia
Environmental Implications of Soil Erosion and Sediment Yield in Lake Hawassa Watershed, South-central Ethiopia
Abstract Background: Assessing soil erosion, sediment yield and sediment retention capacity of watersheds is one of the under researched areas in watersheds of developing c...
Enhancing Agro-ecosystem Services through Integrated Watershed Management in Etmadpur Watershed of Agra, Uttar Pradesh, India
Enhancing Agro-ecosystem Services through Integrated Watershed Management in Etmadpur Watershed of Agra, Uttar Pradesh, India
The changing climate affects agriculture sector severely especially in developing countries like India. To overcome such impacts, the Government of India has undertaken several ada...
ASSESSING SOIL EROSION SEVERITY IN TEMPORAL AND SPATIAL PATTERN: A CASE STUDY IN THE PLEIKU PLATEAU, GIA LAI PROVINCE
ASSESSING SOIL EROSION SEVERITY IN TEMPORAL AND SPATIAL PATTERN: A CASE STUDY IN THE PLEIKU PLATEAU, GIA LAI PROVINCE
Soil erosion is one of the major causes of land degradation and negatively impacts the soil environment in the world. There are two approaches to assessing soil erosion severity (S...

Back to Top