基于GIS和SWAT模型的摩洛哥布雷格流域水文模拟

A. Fadil, H. Rhinane, A. Kaoukaya, Y. Kharchaf, Omar Alami Bachir
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引用次数: 100

摘要

流域尺度的水资源研究被广泛采用作为对这些重要自然资源进行管理、评价和模拟的方法。遥感和地理信息系统技术的发展使利用基于空间和物理的水文模型尽可能简单和真实地模拟流域系统的功能成为可能。事实上,阻碍扩大使用这些工具的主要制约因素是无法获得或缺乏数据,特别是在发展中国家。在此背景下,本研究的目的是利用水土评估工具(SWAT)对位于摩洛哥中北部的布尔格雷格流域的水文进行建模,以了解和确定不同的流域水文过程。因此,本文旨在模拟流域流量,建立水量平衡,估算流域出水口SMBA坝的月入水量。利用ArcGIS软件中实现的ArcSWAT接口对流域及其子组件进行圈定、数据层组合和模型数据库编辑。利用逐日时间数据序列对模型参数进行分析、排序和调整,以便进行水文建模。1989年至1997年使用基于Shuffled Complex Evolution Algorithm的自动校准方法进行校准,并于1998年至2005年进行验证。基于统计指标的评价结果表明,SWAT模型在布尔格雷格流域的定标期和验证期均具有较好的效果。事实上,该模型显示了月平均河流流量与模拟的R²和Nash系数在0.8左右的良好相关性。正确估算了水平衡分量,成功再现了SMBA坝入流,R²为0.9。这些结果表明,如果经过适当的校准,SWAT模型可以在半干旱地区有效地用于支持水管理政策。
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Hydrologic Modeling of the Bouregreg Watershed (Morocco) Using GIS and SWAT Model
The study of water resources at watershed scale is widely adopted as approach to manage, assess and simulate these important natural resources. The development of remote sensing and GIS techniques has allowed the use of spatially and physically based hydrologic models to simulate as simply and realistically as possible the functioning of watershed systems. Indeed, the major constraint that has hindered the expansion use of these tools was the unavailability or scarcity of data especially in the developing countries. In this context, the objective of this study is to model the hydrology in the Bouregreg basin, located at the north-central of Morocco, using the Soil and Water Assessment Tool (SWAT) in order to understand and determine the different watershed hydrological processes. Thus, it aims to simulate the stream flow, establish the water balance and estimate the monthly volume inflow to SMBA dam situated at the basin outlet. The ArcSWAT interface implemented in the ArcGIS software was used to delineate the basin and its sub-components, combine the data layers and edit the model database. The model parameters were analyzed, ranked and adjusted for hydrologic modeling purposes using daily temporal data series. They were calibrated using an auto-calibration method based on a Shuffled Complex Evolution Algorithm from 1989 to 1997 and validated from 1998 to 2005. Based on statistical indicators, the evaluation indicates that SWAT model had a good performance for both calibration and validation periods in Bouregreg Watershed. In fact, the model showed a good correlation between the observed and simulated monthly average river discharge with R² and Nash coefficient of about 0.8. The water balance components were correctly estimated and the SMBA dam inflow was successfully reproduced with R² of 0.9. These results revealed that if properly calibrated, SWAT model can be used efficiently in semi-arid regions to support water management policies.
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