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Estimation of catchment averaged sensible heat fluxes using a large aperture scintillometer

机译:使用大口径闪烁仪估算流域平均显热通量

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摘要

Evapotranspiration rates at the catchment scale are very difficult to quantify. One possible manner to continuously observe this variable could be the estimation of sensible heat fluxes (H) across large distances (in the order of kilometers) using a large aperture scintillometer (LAS), and inverting these observations into evapotranspiration rates, under the assumption that the LAS observations are representative for the entire catchment. The objective of this paper is to assess whether measured sensible heat fluxes from a LAS over a long distance (9.5 km) can be assumed to be valid for a 102.3 km2 heterogeneous catchment. Therefore, a fully process-based water and energy balance model with a spatial resolution of 50 m has been thoroughly calibrated and validated for the Bellebeek catchment in Belgium. A footprint analysis has been performed. In general, the sensible heat fluxes from the LAS compared well with the modeled sensible heat fluxes within the footprint. Moreover, as the modeled H within the footprint has been found to be almost equal to the modeled catchment averaged H, it can be concluded that the scintillometer measurements over a distance of 9.5 km and an effective height of 68 m are representative for the entire catchment.
机译:流域尺度上的蒸散速率很难量化。连续观测该变量的一种可能方式是使用大孔径闪烁仪(LAS)估算大距离(以千米为单位)的感热通量(H),并将这些观测值转化为蒸散速率,其假设是LAS观测值代表了整个集水区。本文的目的是评估在102.3 km2的非均质流域中,长距离(9.5 km)的LAS感测热通量是否有效。因此,针对比利时贝勒贝克集水区的空间分辨率为50 m的完全基于过程的水和能量平衡模型已经过全面校准和验证。足迹分析已经执行。通常,来自LAS的显热通量与占位面积内的模型显热通量比较良好。此外,由于已发现足迹内的模拟H几乎等于模拟集水区的平均H,因此可以得出结论,闪烁仪在9.5 km距离和68 m有效高度上的测量值可代表整个集水区。

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  • 来源
    《Water resources research》 |2011年第5期|p.W05536.1-W05536.17|共17页
  • 作者单位

    Laboratory of Hydrology and Water Management, Ghent University,Ghent, Belgium;

    Laboratory of Hydrology and Water Management, Ghent University,Ghent, Belgium Now at Marine Environmental Department, Jan De Nul Group, Aalst,Belgium;

    Department of Operational Water Management, Flemish Environmen-tal Agency, Brussels, Belgium;

    Laboratory of Hydrology and Water Management, Ghent University,Ghent, Belgium;

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