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首页> 外文期刊>Remote Sensing >Regional Water Balance Based on Remotely Sensed Evapotranspiration and Irrigation: An Assessment of the Haihe Plain, China
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Regional Water Balance Based on Remotely Sensed Evapotranspiration and Irrigation: An Assessment of the Haihe Plain, China

机译:基于遥感蒸散和灌溉的区域水平衡:中国海河平原的评估

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摘要

Optimal planning and management of the limited water resources for maximum productivity in agriculture requires quantifying the irrigation applied at a regional scale. However, most efforts involving remote sensing applications in assessing large-scale irrigation applied (IA) have focused on supplying spatial variables for crop models or studying evapotranspiration (ET) inversions, rather than directly building a remote sensing data-based model to estimate IA. In this study, based on remote sensing data, an IA estimation model together with an ET calculation model (ETWatch) is set up to simulate the spatial distribution of IA in the Haihe Plain of northern China. We have verified this as an effective approach for the simulation of regional IA, being more reflective of regional characteristics and of higher resolution compared to single site-specific results. The results show that annual ET varies from 527 mm to 679 mm and IA varies from 166 mm to 289 mm, with average values of 602 mm and 225 mm, respectively, from 2002 to 2007. We confirm that the region along the Taihang Mountain in Hebei Plain has serious water resource sustainability problems, even while receiving water from the South-North Water Transfer (SNWT) project. This is due to the region’s intensive agricultural production and declining groundwater tables. Water-saving technologies, including more timely and accurate geo-specific IA assessments, may help reduce this threat.
机译:要对农业中有限的水资源进行最佳规划和管理,以实现农业的最高生产力,就需要对区域规模的灌溉进行量化。但是,涉及遥感应用程序以评估大规模灌溉应用(IA)的大多数工作都集中在为作物模型提供空间变量或研究蒸散(ET)反演上,而不是直接建立基于遥感数据的模型来估算IA。在这项研究中,基于遥感数据,建立了IA估计模型和ET计算模型(ETWatch),以模拟中国北方海河平原IA的空间分布。我们已经证明这是模拟区域IA的有效方法,与特定于单个站点的结果相比,它更能反映区域特征和更高的分辨率。结果表明,从2002年到2007年,年ET值从527mm到679mm不等,IA值从166mm到289mm不等,平均水平分别为602mm和225mm。即使从南水北调工程获得水源,河北平原也存在严重的水资源可持续性问题。这是由于该地区集约化农业生产和地下水位下降。节水技术,包括更及时,更准确的针对特定地理位置的IA评估,可能有助于减少这种威胁。

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