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An improved process-based representation of stream solute transport in the soil and water assessment tools

机译:一种改进的土壤和水分评估工具流溶质转运的基于过程的陈述

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摘要

Hydrological models have long been used to study the interactions between land, surface and groundwater systems, and to predict and manage water quantity and quality. The soil and water assessment tool (SWAT), a widely used hydrological model, can simulate various ecohydrological processes on land and subsequently route the water quality constituents through surface and subsurface waters. So far, in-stream solute transport algorithms of the SWAT model have only been minimally revised, even though it has been acknowledged that an improvement of in-stream process representation can contribute to better model performance with respect to water quality. In this study, we aim to incorporate a new and improved solute transport model into the SWAT model framework. The new process-based model was developed using in-stream process equations from two well established models-the One-dimensional Transport with Inflow and Storage model and the Enhanced Stream Water Quality Model. The modified SWAT model (Mir-SWAT) was tested for water quality predictions in a study watershed in Germany. Compared to the standard SWAT model, Mir-SWAT improved dissolved oxygen (DO) predictions by removing extreme low values of DO (6 mg/L) simulated by SWAT. Phosphate concentration peaks were reduced during high flows and a better match of daily predicted and measured values was attained using the Mir-SWAT model (R-2 = 0.17, NSE = -0.65, RSR = 1.29 with SWAT; R-2 = 0.28, NSE = -0.04, RSR = 1.02 with Mir-SWAT). In addition, Mir-SWAT performed better than the SWAT model in terms of Chlorophyll-a content particularly during winter months, improving the NSE and RSR for monthly average Chl-a by 74 and 42%, respectively. With the new model improvements, we aim to increase confidence in the stream solute transport component of the model, improve the understanding of nutrient dynamics in the stream, and to extend the applicability of SWAT for reach-scale analysis and management.
机译:水文模型长期以来已经用于研究陆地,地表和地下水系统之间的相互作用,并预测和管理水量和质量。土壤和水分评估工具(SWAT)是广泛使用的水文模型,可以在陆地上模拟各种生态学过程,随后通过表面和地下水途中水质成分。到目前为止,SWAT模型的流式溶质运输算法仅被最低限度修正,即使已经承认,流过程表示的改善可以有助于更好地相对于水质的模型性能。在这项研究中,我们的目标是将新的和改进的溶质运输模型纳入SWAT模型框架。新的基于过程的模型是使用来自两种明确的模型的流过程方程式开发 - 具有流入和存储模型的一维传输和增强流水质模型。经过修改的SWAT模型(MIR-SWAT)在德国的研究流域中进行了水质预测。与标准的SWAT模型相比,MIR-SWAT通过去除通过SWAT模拟的极端低值来改善溶解的氧(DO)预测。在高流量期间降低磷酸盐浓度峰值,使用MIR-SWAT模型(R-2 = 0.17,NSE = -0.65,RSR = 1.29,R-2 = 0.28,获得更好的日常预测和测量值的更好匹配; R-2 = 0.28, nse = -0.04,RSR = 1.02带miR-SWAT)。此外,MIR-SWAT在冬季月份的叶绿素-A含量方面表现优于SWAT模型,特别是在冬季,改善月平均CHL-A的NSE和RSR分别达74%和42%。随着新的模型改进,我们的目标是增加对模型的溪流溶质运输成分的信心,提高对流中养分动力学的理解,并延长了SWAT的适用性达到尺度分析和管理。

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