首页> 外文会议>International Conference on Geoinformatics;Geoinformatics 2012 >Study on Multi-scale Distributed Modeling of Flow,Sediment,and Transport Processes for Nitrogen and Phosphorus in Lianshui Basin,Jiangxi Province
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Study on Multi-scale Distributed Modeling of Flow,Sediment,and Transport Processes for Nitrogen and Phosphorus in Lianshui Basin,Jiangxi Province

机译:涟水盆地氮磷流,泥沙及输运过程的多尺度分布式建模研究

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Agricultural Non-point Sources Pollution is one of a leading cause of water quality problems in southeast of China. It is an effective approach for ANSP control that modeling nitrogen and phosphorus transfer in a basin system by using mathematic models based on geographic processes. In this paper, the multiscale integrating distributed modeling frame was designed based on different spatial discretization units by using the (Soil and Water Assessment Tools) model and field-scale APEX (Agricultural Policy/Environmental eXtender) model. A large number basic geographic data were collected and parameterization in Lianshui basin, Xingguo County, Jiangxi province. The mutil-scale distributed computer simulation for water yield, sediment yield of 1991 to 2005 and the transport processes for nitrogen and phosphors of Oct, 2002 to Oct, 2004 were carried out in the study area of Lianshui basin. The average simulation accuracy, coefficient of efficiency (ENS) and deterministic coefficient (R2) were 89.4%, 0.88 and 0.89 for annual water yield and 75.1%, 0.70 and 0.76 for annual sediment yield, respectively. The simulation results indicate that the integrating modeling has an acceptable performance in prediction of water yield and sediment loading in Lianshui basin. The predicted monthly nitrogen and phosphorus loading have larger amount difference than measured although both the predicted and measured have almost accordant trends. The reasons that caused bad accuracy for nutrient simulation should be further studied. The method of integration for multi-scale models can take the advantages effectively for each model, which can be applied in quantitative study on the geographical processes in different levels.
机译:农业面源污染是中国东南部水质问题的主要原因之一。通过使用基于地理过程的数学模型对流域系统中的氮和磷迁移进行建模,这是ANSP控制的有效方法。本文利用(土壤和水评估工具)模型和现场规模的APEX(农业政策/环境专家)模型,基于不同的空间离散化单元设计了多尺度集成分布式建模框架。江西省兴国县涟水盆地已收集了大量基本地理数据并对其进行了参数化。在涟水盆地研究区进行了1991年至2005年水产量,沉积物产量以及2002年10月至2004年10月氮,磷的迁移过程的多尺度分布式计算机模拟。年产水量的平均模拟精度,效率系数(ENS)和确定性系数(R2)分别为89.4%,0.88和0.89,年沉积物产量分别为75.1%,0.70和0.76。仿真结果表明,该综合模型在预测涟水盆地的产水量和含沙量方面具有可接受的性能。尽管预测值和测量值都具有几乎一致的趋势,但预计的每月氮和磷负荷量与测量值相比存在较大的差异。造成营养素模拟精度下降的原因应进一步研究。多尺度模型的集成方法可以有效利用每种模型的优势,可以应用于不同层次地理过程的定量研究。

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