基于遥感蒸散发的水资源估算模型

Hao Wang, Bingfang Wu, Shanlong Lu, Ninglei Ouyang, Jiahong Li
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引用次数: 1

摘要

现有的水资源估算方法存在许多问题。在传统的水资源评价方法中,由于未测量的径流量项要么被忽略,要么根据当地人口和用水量进行统计估算,因此无法准确估算径流量。此外,用于计算含水层补水量的水文地质参数也是经验的。此外,传统的水资源评价方法耗费人力和资金。对于水文模型来说,模型过程复杂,需要利用大量的观测数据对参数进行标定。为了解决上述问题,本文提出了一种基于遥感蒸散发(ET)的水资源估算模型。其中,水资源定义为降水与不可控ET之差。不可控ET是指自然地表的自然ET,不包括人类用水产生的ET。根据土地利用的自然特征,将遥感ET与土地利用相结合,得到不可控ET。耕地不可控蒸散发是利用卫星归一化植被指数(NDVI)提取土壤蒸发量得到的。实例分析结果表明,计算的水资源与从水资源报告中获取的水资源具有较高的相关性。通过提高降水插值和土地利用分类的精度,可以消除计算水资源的偏差。
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Water resources estimation model based on remote sensing evapotranspiration
There are many problems for the current water resource estimation methods. For the traditional water resources assessment method, the runoff reduction cannot be accurately estimated, because the unmeasured terms of runoff reduction are either neglected or statistically estimated according to the local population and water use ration. Also, the hydrogeological parameters used to calculate the water replenishment to aquifer are empirical. Furthermore, the traditional water resources assessment method is labor consuming and fund consuming. For the hydrological model, model processes are complicated, and parameters should be calibrated with a lot of observation data. In order to solve the above-mentioned problems, this paper proposes an innovative water resources estimation model based on remote sensing evapotranspiration (ET). There, the water resources are defined as the difference between precipitation and uncontrollable ET. The uncontrollable ET is the natural ET from natural surface and doesn't include the ET from water consumption of humans. By combining the remote sensing ET and land use according to the natural characteristic of land uses, the uncontrollable ET is obtained. While the cropland uncontrollable ET is obtained by extracting the soil evaporation using satellite based Normalized Difference Vegetation Index (NDVI). A case study result shows that calculated water resources are relatively high correlated with that of obtaining from water resources reports. And the deviation of the calculated water resources can be eliminated by improving the accuracy of the precipitation interpolation and land use classification.
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