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A WINDOWS‐BASED GIS‐AGNPS INTERFACE

Identifieur interne : 000747 ( Istex/Corpus ); précédent : 000746; suivant : 000748

A WINDOWS‐BASED GIS‐AGNPS INTERFACE

Auteurs : Chansheng He ; Changan Shi ; Changchun Yang ; Bryan P. Agosti

Source :

RBID : ISTEX:6B242E3D8C1DD06652A3DE6BB1F47B3BEB3D70B1

English descriptors

Abstract

ABSTRACT: ArcView Nonpoint Source Pollution Modeling (AVNPSM), an interface between ArcView GIS and AGNPS (Agricultural Nonpoint Source Pollution Model) is developed in support of agricultural watershed analysis and nonpoint source pollution management. The interface is PC‐based and operates in a Windows environment. It consists of seven modules: AGNPS utility, parameter generator, input file processor, model executor, output visualizer, statistical analyzer, and land use simulator. Basic input data to the interface include: soil, digital elevation model, land use/cover, water features, climate, and information on management practices. Application of the AVNPSM to a sample watershed indicates that it is user friendly, flexible, and robust, and it significantly improves the efficiency of the nonpoint source pollution modeling process.

Url:
DOI: 10.1111/j.1752-1688.2001.tb00977.x

Links to Exploration step

ISTEX:6B242E3D8C1DD06652A3DE6BB1F47B3BEB3D70B1

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ArcView Nonpoint Source Pollution Modeling (AVNPSM), an interface between ArcView GIS and AGNPS (Agricultural Nonpoint Source Pollution Model) is developed in support of agricultural watershed analysis and nonpoint source pollution management. The interface is PC‐based and operates in a Windows environment. It consists of seven modules: AGNPS utility, parameter generator, input file processor, model executor, output visualizer, statistical analyzer, and land use simulator. Basic input data to the interface include: soil, digital elevation model, land use/cover, water features, climate, and information on management practices. Application of the AVNPSM to a sample watershed indicates that it is user friendly, flexible, and robust, and it significantly improves the efficiency of the nonpoint source pollution modeling process.</p>
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<p>Paper No. 98134 of the
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<p>Respectively, Associate Professor, Department of Geography, Western Michigan University, 1201 Oliver St., Kalamazoo, Michigan 49008; ESRI, Inc., 380 New York St., Redlands, California 92373 (former graduate student); Graduate Student, Department of Computer Science, Western Michigan University, 1201 Oliver St., Kalamazoo, Michigan 49008; and The Mannik and Smith Group Inc., 1800 Indiana Wood Circle, Maumee, Ohio 43537 (E‐Mail/He:
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Data generation: Wed Mar 29 00:06:34 2017. Site generation: Tue Mar 12 12:44:16 2024