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Improving methods for estimating small reservoir evaporation in the Brazilian Savanna

机译:提高巴西大草原估算小储层蒸发的方法

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摘要

The Brazilian Savanna biome is the main agricultural region of Brazil and is facing a growing water shortage and conflicts that tend to expand to new areas and intensify in those already stressed, which is hindering the economic development of the region. Small reservoirs play an important role in supporting the local economy in the savanna areas of Brazil. Hundreds of small reservoirs have been built in the last twenty years in the region. They were constructed by individual farmers or projects funded by different agencies without any coordination and knowledge that the reservoirs are part of a complex hydrologic system. The lack of reservoir basic information and appropriate methods to quantify water supply, demand and losses are hindering efficient water management. In this context, evaporation is a non beneficial loss to the water system and should be better quantified. The present study aimed to improve methods for estimating small reservoir evaporation in the Brazilian savanna region. The study area was the Buriti Vermelho watershed, where the evaporation were measured in Class A pans installed inside and outside of a small reservoir. Pan coefficients were calculated on a monthly, seasonal and annual basis. In addition, equations for estimating evaporation based on climatic variables were developed. The pan coefficients values varied throughout the year from 0.72 to 0.92, with mean absolute error (MAE) ranging from 0.32 to 0.52 mm d(-1). The two best climatic equations presented MAE of 0.44 mm d(-1), while equations that used solar radiation and relative humidity as input also presented good performance.
机译:巴西大草原生物群落是巴西的主要农业区,面临着越来越多的水资源不足和冲突,倾向于扩大到新的领域,并在那些已经强调的人中加剧,这正在妨碍该地区的经济发展。小水库在支持巴西大草原地区的地方经济方面发挥着重要作用。在该地区的最后二十年内建造了数百个小水库。他们由不同机构资助的个人农民或项目构成,没有任何协调和知识,储层是复杂的水文系统的一部分。缺乏水库基本信息和量化供水,需求和损失的适当方法正在妨碍有效的水管理。在这种情况下,蒸发是水系统的非有益损失,应该更好地量化。本研究旨在改进估算巴西大草原地区小储层蒸发的方法。研究区是Buriti Vermelho流域,其中蒸发在课堂上衡量一个小水库内外的平底锅。平移系数按月,季节性和年度计算。此外,开发了基于气候变量估算蒸发的方程。 PAN系数值在整个年份中变化为0.72至0.92,平均绝对误差(MAE)范围为0.32至0.52 mm d(-1)。这两个最佳气候方程呈现为0.44 mm的MAE(-1),而使用太阳辐射和相对湿度的方程式也呈现出良好的性能。

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