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The potential for remote sensing and hydrologic modelling to assess the spatio-temporal dynamics of ponds in the Ferlo Region (Senegal)

机译:遥感和水文建模潜力,以评估费罗地区(塞内加尔)池塘的时空动态

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摘要

In the Ferlo Region in Senegal, livestock depend on temporary ponds for water but are exposed to the Rift Valley Fever (RVF), a disease transmitted to herds by mosquitoes which develop in these ponds. Mosquito abundance is related to the emptying and filling phases of the ponds, and in order to study the epidemiology of RVF, pond modelling is required. In the context of a data scarce region, a simple hydrologic model which makes use of remote sensing data was developed to simulate pond water dynamics from daily rainfall. Two sets of ponds were considered: those located in the main stream of the Ferlo Valley whose hydrological dynamics are essentially due to runoff, and the ponds located outside, which are smaller and whose filling mechanisms are mainly due to direct rainfall. Separate calibrations and validations were made for each set of ponds. Calibration was performed from daily field data (rainfall, water level) collected during the 2001 and 2002 rainy seasons and from three different sources of remote sensing data: 1) very high spatial resolution optical satellite images to access pond location and surface area at given dates, 2) Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) Digital Elevation Model (DEM) data to estimate pond catchment area and 3) Tropical Rainfall Measuring Mission (TRMM) data for rainfall estimates. The model was applied to all ponds of the study area, the results were validated and a sensitivity analysis was performed. Water height simulations using gauge rainfall as input were compared to water level measurements from four ponds and Nash coefficients 0.7 were obtained. Comparison with simulations using TRMM rainfall data gave mixed results, with poor water height simulations for the year 2001 and good estimations for the year 2002. A pond map derived from a Quickbird satellite image was used to assess model accuracy for simulating pond water areas for all the ponds of the study area. The validation showed that modelled water areas were mostly underestimated but significantly correlated, particularly for the larger ponds. The results of the sensitivity analysis showed that parameters relative to pond shape and catchment area estimation have less effects on model simulation than parameters relative to soil properties (rainfall threshold causing runoff in dry soils and the coefficient expressing soil moisture decrease with time) or the water loss coefficient. Overall, our results demonstrate the possibility of using a simple hydrologic model with remote sensing data to track pond water heights and water areas in a homogeneous arid area. (Résumé d'auteur)
机译:在塞内加尔的费洛地区,牲畜依靠临时池塘取水,但是却受到裂谷热(RVF)的影响,裂谷热是由这些池塘中生长的蚊子传播给畜群的。蚊子的丰度与池塘的排空和灌水阶段有关,为了研究RVF的流行病学,需要对池塘进行建模。在数据稀缺地区的背景下,开发了一个利用遥感数据的简单水文模型,以模拟每日降雨产生的池塘水动态。考虑了两组池塘:位于Ferlo山谷干流中的池塘,其水文动力学主要是由径流引起的;以及位于外部的池塘,它们的大小较小,并且其充水机制主要是由于直接降雨造成的。对每组池塘分别进行了校准和验证。根据2001年和2002年雨季期间收集的每日现场数据(降雨,水位)以及三种不同的遥感数据源进行校准:1)非常高分辨率的光学卫星图像,可在给定日期访问池塘的位置和表面积; 2)先进的星载热发射和反射辐射计(ASTER)数字高程模型(DEM)数据,用于估算池塘集水面积; 3)热带降雨测量任务(TRMM)数据,用于估算降雨。该模型已应用于研究区域的所有池塘,验证了结果并进行了敏感性分析。使用标准降雨作为输入的水高模拟与四个池塘的水位测量进行了比较,得出纳什系数> 0.7。与使用TRMM降雨数据进行的模拟比较得出的结果好坏参半,其中2001年的水位模拟较差,而2002年的估计值却很好。从Quickbird卫星图像得出的池塘图被用来评估模拟所有池塘水域面积的模型准确性。研究区的池塘。验证表明,模拟水域面积大多被低估,但相关性显着,特别是对于较大的池塘。敏感性分析的结果表明,与池塘形状和集水区估计有关的参数对模型模拟的影响小于与土壤特性(降雨阈值导致干旱土壤中的径流以及表示土壤水分的系数随时间降低)有关的参数的影响。损耗系数。总体而言,我们的结果证明了使用带有遥感数据的简单水文模型来追踪均质干旱地区池塘水位和水域面积的可能性。 (Résuméd'auteur)

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