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Modelling sediment and total phosphorus export from a lowland catchment: comparing sediment routing methods

机译:低地集水区建模沉积物和总磷出口:比较沉积物路由方法

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摘要

Bank erosion is the main source of suspended sediment (SS) and diffuse total phosphorus (TP) in many lowland catchments. This study compared a physically based sediment routing method (Physical method), which distinguishes between stream bed and bank erosion, with the original sediment routing method (Original method) within the Soil and Water Assessment Tool (SWAT) version 2009, for simulating SS and TP losses from a lowland catchment. A SWAT model was set up for the lowland River Odense catchment in Denmark and calibrated against observed stream flow and phosphate (PO4) loads. On the basis of an initial calibration of hydrological and PO4 parameters, the SWAT model with the Original method (Original model) and the SWAT model with the Physical method (Physical model) were calibrated separately against observed SS and TP loads. The SWAT model simulated daily stream flow well but underestimated PO4 loads. The Physical model simulated daily SS and TP better than the Original model. The simulated contribution of bank erosion to SS in the Physical model (99%) was close to the estimated contribution from in situ erosion measurements (90-94%). Compared with the Original method, the Physical method is not only more conceptually correct but also improves model performance. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:银行侵蚀是许多低地集水区中悬浮沉积物(SS)的主要来源,弥漫性磷(TP)。本研究比较了物理上基于沉积物路由方法(物理方法),其区别于流床和银行侵蚀,土壤和水评估工具(SWAT)版本2009内的原始沉积物路由方法(原始方法),用于模拟SS和来自低地集水区的TP损失。在丹麦的低地河流欧语集水区设立了SWAT模型,并校准了观察到的流流程和磷酸盐(PO4)负载。在水文和PO4参数的初始校准的基础上,具有原始方法(原始模型)和具有物理方法(物理模型)的SWAT模型的SWAT模型被分开校准观察到的SS和TP负载。 SWAT模型模拟日常流流井,但低估了PO4负载。物理模型模拟每日SS和TP优于原始模型。银行侵蚀在物理模型中的模拟贡献(99%)接近原位侵蚀测量的估计贡献(90-94%)。与原始方法相比,物理方法不仅更概念化,而且还提高了模型性能。版权所有(c)2014 John Wiley&Sons,Ltd。

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