首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Evaluation of management alternatives for an agricultural watershed in a sub-humid subtropical region using a physical process based model.
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Evaluation of management alternatives for an agricultural watershed in a sub-humid subtropical region using a physical process based model.

机译:使用基于物理过程的模型评估亚湿润亚热带地区的一个农业流域的管理替代方案。

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Assessments of potential environmental impacts of non-point source (NPS) pollutants at local and regional scales are necessary as a basis for effective management strategies to protect precious resources such as land and water. Intensive watershed scale study is therefore necessary to develop management strategies for abating the agricultural NPS pollution. The major goal of the present study was to identify the critical areas of an agricultural watershed and recommend the best management practices using a physical process based watershed scale model, soil water assessment tool (SWAT). A 973-ha agricultural watershed located in Midnapore district of West Bengal state in eastern India was monitored to quantify the hydrologic parameters such as runoff, sediment yield and the quality of surface water. The model was calibrated and validated using observed hydrologic and water quality data of the watershed monitored during the rainy seasons of 2002 and 2003, respectively. Besides these data, micro-meteorological data, topographical map, soil map, land resources data and remote sensing data (satellite imagery) of the watershed were used as input to the model. The study revealed that SWAT model simulates daily runoff, sediment yield and nutrient concentration in runoff satisfactorily throughout the entire rainy season, as evident from standard statistical tests. The calibrated model was then successfully used for identifying the critical sub-watersheds and for development of best management practices. Several simulations were performed to determine the best out of the 48 different combinations of treatments for the management of the critical sub-watersheds. The study revealed that no other crop could replace the rice (Oryza sativa) crop during the rainy season and the existing conventional tillage practice needs to be replaced by conservation tillage in order to minimize the sediment yield and nutrient losses. Fertilizer application rate of 80:60 kg ha-1 of N:P is also recommended to minimize the surface water pollution in the watershed due to NO3-N and P..
机译:必须在地方和区域范围内评估非点源(NPS)污染物的潜在环境影响,以此作为有效管理策略的基础,以保护土地和水等珍贵资源。因此,有必要对集水区进行深入研究,以制定减轻农业NPS污染的管理策略。本研究的主要目标是确定农业流域的关键区域,并使用基于物理过程的流域规模模型,土壤水评估工具(SWAT)推荐最佳管理方法。监测了位于印度东部西孟加拉邦中部地区的一个973公顷农业流域,以量化水文参数,例如径流,沉积物产量和地表水质量。分别使用2002年和2003年雨季期间监测到的流域的水文和水质数据对模型进行了校准和验证。除这些数据外,流域的微气象数据,地形图,土壤图,土地资源数据和遥感数据(卫星图像)也用作模型的输入。研究表明,SWAT模型可以令人满意地模拟整个雨季的日径流,产沙量和径流中的养分含量,这从标准统计测试可以明显看出。然后,将校准后的模型成功用于识别关键子流域和开发最佳管理实践。进行了几次模拟以确定在处理关键子集水区的48种不同处理组合中的最佳方法。研究表明,在雨季没有其他农作物替代水稻(Oryza sativa)农作物,需要通过保护性耕作代替现有的传统耕作方式,以最大程度地减少沉积物产量和养分流失。还建议使用N:P为80:60 kg ha-1的肥料,以最大程度地减少因NO3-N和P造成的流域地表水污染。

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