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Assessing the multi-resolution information content of remotely sensed variables and elevation for evapotranspiration in a tall-grass prairie environment

机译:评估高草草原环境中蒸散量的遥感变量和海拔的多分辨率信息内容

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摘要

Understanding the spatial scaling behavior of evapotranspiration and its relation to controlling factors on the land surface is necessary to accurately estimate regional water cycling. We propose a method for ascertaining this scaling behavior via a combination of wavelet multi-resolution analysis and information theory metrics. Using a physically-based modeling framework, we are able to compute spatially distributed latent heat fluxes over the tall-grass prairie in North-central Kansas for August 8, 2005. Comparison with three eddy-covariance stations and a large aperture scintillometer demonstrates good agreement, and thus give confidence in the modeled fluxes. Results indicate that the spatial variability in radiometric temperature (a proxy for soil moisture) most closely controls the spatial variability in evapotranspiration. Small scale variability in the water flux can be ascribed to the small scale spatial variance in the fractional vegetation. In addition, correlation analysis indicates general scale invariance and that low spatial resolution data may be adequate for accurately determining water cycling in prairie ecosystems. (C) 2008 Elsevier Inc. All rights reserved.
机译:了解蒸发蒸腾的空间尺度行为及其与陆地表面控制因素的关系对于准确估算区域水循环是必要的。我们提出了一种通过结合小波多分辨率分析和信息论指标来确定这种缩放行为的方法。使用基于物理的建模框架,我们能够计算2005年8月8日在堪萨斯州中北部高草草原上空间分布的潜热通量。与三个涡动协方差站和一个大孔径闪烁仪的比较证明了良好的一致性。 ,从而对模型的通量充满信心。结果表明,辐射温度(代表土壤水分)的空间变异性最密切地控制着蒸散量的空间变异性。水通量的小范围变化可以归因于分数植被的小范围空间变化。此外,相关分析表明总体尺度不变,低空间分辨率数据可能足以准确确定草原生态系统中的水循环。 (C)2008 Elsevier Inc.保留所有权利。

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