首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Impact of Tile Drainage on Evapotranspiration in South Dakota, USA, Based on High Spatiotemporal Resolution Evapotranspiration Time Series From a Multisatellite Data Fusion System
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Impact of Tile Drainage on Evapotranspiration in South Dakota, USA, Based on High Spatiotemporal Resolution Evapotranspiration Time Series From a Multisatellite Data Fusion System

机译:基于多卫星数据融合系统的高时空分辨率蒸散时间序列,美国南达科他州瓷砖排水对蒸散的影响

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摘要

Soil drainage is a widely used agricultural practice in the midwest USA to remove excess soil water to potentially improve the crop yield. Research shows an increasing trend in baseflow and streamflow in the midwest over the last 60 years, which may be related to artificial drainage. Subsurface drainage (i.e., tile) in particular may have strongly contributed to the increase in these flows, because of its extensive use and recent gain in the popularity as a yield-enhancement practice. However, how evapotranspiration (ET) is impacted by tile drainage on a regional level is not well-documented. To explore spatial and temporal ET patterns and their relationship to tile drainage, we applied an energy balance-based multisensor data fusion method to estimate daily 30-m ET over an intensively tile-drained area in South Dakota, USA, from 2005 to 2013. Results suggest that tile drainage slightly decreases the annual cumulative ET, particularly during the early growing season. However, higher mid-season crop water use suppresses the extent of the decrease of the annual cumulative ET that might be anticipated from widespread drainage. The regional water balance analysis during the growing season demonstrates good closure, with the average residual from 2005 to 2012 as low as -3 mm. As an independent check of the simulated ET at the regional scale, the water balance analysis lends additional confidence to the study. The results of this study improve our understanding of the influence of agricultural drainage practices on regional ET, and can affect future decision making regarding tile drainage systems.
机译:在美国中西部,土壤排水是一种广泛使用的农业实践,可以去除土壤中的多余水分,从而有可能提高农作物的产量。研究表明,在过去60年中,中西部的基础流量和水流量都有增加的趋势,这可能与人工排水有关。尤其是地下排水(即瓷砖)可能对这些流量的增加做出了重要贡献,这是因为地下排水的广泛使用以及最近作为提高产量的实践而日益流行。但是,在区域层面上,瓷砖排水如何对蒸散量(ET)产生影响,目前尚无充分文献记载。为了探索空间和时间ET模式及其与瓷砖排水的关系,我们应用了一种基于能量平衡的多传感器数据融合方法来估算2005年至2013年美国南达科他州一个集约化瓷砖排水区域每天30米的ET。结果表明,瓷砖排水会略微降低年度累积ET,特别是在生长早期。但是,季中较高的作物用水量抑制了可能因大量排水而导致的年度累积ET下降的程度。生长季期间的区域水平衡分析显示出良好的封闭性,2005年至2012年的平均残留量低至-3 mm。作为区域范围内模拟ET的独立检查,水平衡分析为研究增添了信心。这项研究的结果增进了我们对农业排水做法对区域ET的影响的理解,并可能影响有关瓷砖排水系统的未来决策。

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    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    Marshall Space Flight Center, Earth Science Office, Huntsville, AL, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    Atmospheric Turbulence and Diffusion Division, National Oceanic and Atmospheric Administration, TN, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    US Geological Survey, Jamestown, ND, USA;

    Space Science and Engineering Center, University of Wisconsin, Madison, WI, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

    U.S. Department of Agriculture—Agricultural Research Service, Hydrology and Remote Sensing Laboratory, Beltsville, MD, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Remote sensing; Satellites; Earth; Soil; Spatial resolution; Atmospheric modeling; MODIS;

    机译:遥感;卫星;地球;土壤;空间分辨率;大气模拟;MODIS;

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