Modelling of non-point source pollution in a watershed using remote sensing and GIS

被引:0
|
作者
Chowdary V.M. [1 ]
Yatindranath [2 ]
Kar S. [2 ]
Adiga S. [3 ]
机构
[1] Regional Remote Sensing Service Centre (ISRO)
[2] Dept. of Agriculture and Food Engineering, IIT
[3] NNRMS, ISRO Head quarters
关键词
Sediment Yield; Universal Soil Loss Equation; Soil Conservation Service; Soil Conservation Service Curve Number; Geographic Information System Model;
D O I
10.1007/BF03030848
中图分类号
学科分类号
摘要
Assessment of the environmental impact of Non Point Source (NPS) pollutants on a global, regional and localized scale is the key component for achieving sustainability of agriculture as well as preserving the environment. The knowledge and information required to address the problem of assessing the impact of NPS pollutants like Nitrogen (N), Phosphorus (P), etc., on the environment crosses several sub-disciplines like remote sensing, Geographical Information System (GIS), hydrology and soil science. The remote sensing data, by virtue of its potential like synopticity, multi-spectral and multi-temporal capability, computer compatibility, besides providing almost real time information, has enhanced the scope of automation of mapping dynamic elements, such as land use/land cover, degradation profile and computing the priority categorisation of sub-watersheds. The present study demonstrates the application of remote sensing, GIS and distributed parameter model Agricultural Non-Point Source Pollution Model (AGNPS) in the assessment of hazardous non-point source pollution in a watershed. The ARCINFO GIS and remote sensing provided the input data to support modelling, while the AGNPS model predicted runoff, sediment and pollutant (N and P) transport within a watershed. The integrated system is used to evaluate the sediment pollution in about 2700 ha Karso watershed located in Hazaribagh area of Jharkhand State, India. The predicted values ofrunoffand sediment yield compared reasonably well with the measured values. It is important to emphasize that this study is not intended to characterise, in an exhaustive manner. Instead, the goal is to illustrate the implications and potential advantages of GIS and remote sensing based Hydrology and Water quality (H/WQ) modelling framework.
引用
收藏
页码:59 / 73
页数:14
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