Title of article
Simulation of soil erosion and nutrient impact using an integrated system dynamics model in a watershed in Taiwan
Author/Authors
Shin-Cheng Yeh، نويسنده , , *، نويسنده , , Chao-An Wang b، نويسنده , , Hui-Ching Yu c، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2006
Pages
12
From page
937
To page
948
Abstract
In recent years, erosion, sediment, and nutrient pollution have become issues of major concern in Taiwan. Keelung River, as it
flows across the Taipei metropolitan area, is one of the most important rivers with regard to these issues. This research aims to
compute and simulate erosion, sediment yield, and resulting nutrient pollution, together with related economic factors. Related
physical models were programmed using a system dynamics software package Vensim , for convenience in scenario designs and
simulations. GIS software ArcView was employed to integrate digitized themes that contain data necessary for further
computation and applications. EXCEL was also used to link ArcView and Vensim and made an interactive computational model.
Five submodels, i.e., the soil erosion model, the sediment transportation model, the runoff model, the nutrient model, and the
economic model, were included in this integrated model. Through this model, it was estimated that, according to the hydrological
and geographical data from last five years, the total annual amounts of soil erosion, sediment yield, and nutrient load are
292,327 tons, 101,661 tons, and 1428 tons, respectively. These results can be compared with those derived from models in other
researches. As the model in this research was driven by a system dynamics core, scenario simulations can be carried out based on
various combinations of system parameters. This offers the model additional flexibility and applicability.
Keywords
Excel , nutrient , Sediment transportation , Scenario simulation , Soil erosion , Vensim , GIS , System dynamics , Taiwan
Journal title
Environmental Modelling and Software
Serial Year
2006
Journal title
Environmental Modelling and Software
Record number
958569
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