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Hydrologic process simulation of a semiarid, endoreic catchment in Sahelian West Niger. 1. Model-aided data analysis and screening

机译:萨赫勒西部尼日尔半干旱内陆流域的水文过程模拟。 1.模型辅助数据分析与筛选

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The drought in the African Sahel, persisting since 1968, emphasizes the vulnerability of local water resources to climatic variations and land use changes in this semiarid environment. Following the Hapex-Sahel experiment (1992-1994), research aims at. understanding and modeling the impact on the hydrological cycle of these changing climatic and environmental conditions over a 1500-km(2) area east of Niamey, Niger. The hydrological landscape consists of a myriad of small endoreic catchments feeding temporary or permanent pools from which water percolates to an unconfined aquifer. As the first step in a local-to.-regional scale approach to the water resource recharge in the area, a physically based rainfall-runoff model is developed for a typical, 1.9-km(2) endoreic system named Wankama, which is monitored continuously since 1992. This first of two companion papers describes the key elements of. the hydrological landscape, the experimental setup with which the Wankama catchment and pool are monitored, the r.water.fea distributed hydrological model and its application to the construction of the Wankama catchment model. Because of the difficulties of long-term field experimentation in the region, not all observed events can be considered equally well recorded; in particular, detection of exogenous water inflow occurrences that may alter Wankama runoff estimates is needed. The paper describes the careful, model-aided data analysis performed in order to select the observation set with which the model can most reliably be tuned and operated. In this rainfall-runoff data analysis phase, the model is used prior to any calibration. Model calibration and verification, including output uncertainty, are the subject of the second paper [J. Hydrol. (2003)]. All steps of analysis and modeling were performed on the 1992-1998 data only, before the 1999-2000 data became available, and are tested a posteriori against the latter. (C) 2003 Elsevier B.V. All rights reserved. [References: 53]
机译:自1968年以来,非洲萨赫勒地区持续干旱,这凸显了该半干旱环境中当地水资源易受气候变化和土地利用变化的影响。继Hapex-Sahel实验(1992年至1994年)之后,进行了研究。了解并建模这些变化的气候和环境条件对尼日尔尼亚美以东1500 km(2)地区的水文循环的影响。水文景观由数不清的小型内陆流域组成,这些流域向临时或永久性水池供水,水从这些水池渗流至无限制的含水层。作为该地区水资源补充的从局部到区域规模方法的第一步,针对名为Wankama的典型1.9 km(2)内分泌系统开发了基于物理的降雨径流模型,该模型受到监测自1992年以来连续不断。这是两篇配套论文中的第一篇,介绍了其关键要素。水文景观,监测Wankama流域和水池的实验装置,r.water.fea分布式水文模型及其在Wankama流域模型构建中的应用。由于该地区长期进行野外实验的困难,因此并非所有观察到的事件都可以被视为记录得很好。特别是,需要检测可能改变Wankama径流估算的外来水流入量。本文介绍了进行仔细的模型辅助数据分析,以选择可以最可靠地调整和操作模型的观察集。在这个降雨径流数据分析阶段,在任何校准之前都要使用该模型。第二篇论文的主题是模型校准和验证,包括输出不确定性。液压(2003)]。分析和建模的所有步骤仅在获得1999-2000年数据之前才对1992-1998年数据执行,并针对后者进行了后验检验。 (C)2003 Elsevier B.V.保留所有权利。 [参考:53]

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