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A generalized complementary relationship between actual and potential evaporation defined by a reference surface temperature

机译:由参考表面温度定义的实际蒸发量和潜在蒸发量之间的广义互补关系

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摘要

The definition of potential evaporation remains widely debated despite its centrality for hydrologic and climatic models. We employed an analytical pore-scale representation of evaporation from terrestrial surfaces to define potential evaporation using a hypothetical steady state reference temperature that is common to both air and evaporating surface. The feedback between drying land surfaces and overlaying air properties, central in the Bouchet (1963) complementary relationship, is implicitly incorporated in the hypothetical steady state where the sensible heat flux vanishes and the available energy is consumed by evaporation. Evaporation rates predicted based on the steady state reference temperature hypothesis were in good agreement with class A pan evaporation measurements suggesting that evaporation from pans occurs with negligible sensible heat flux. The model facilitates a new generalization of the asymmetric complementary relationship with the asymmetry parameter b analytically predicted for a wide range of meteorological conditions with initial tests yielding good agreement between measured and predicted actual evaporation.
机译:尽管潜在蒸发的定义在水文和气候模型中处于中心地位,但仍受到广泛争议。我们使用了从地面蒸发的分析孔隙尺度表示法,以使用空气和蒸发表面共同的假设稳态参考温度来定义潜在的蒸发。在Bouchet(1963)互补关系的中心,干燥的陆地表面与覆盖的空气特性之间的反馈隐含在假设的稳态中,在该稳态下,显热通量消失,可用能量被蒸发消耗。根据稳态参考温度假设预测的蒸发速率与A类锅的蒸发量测量值非常吻合,表明从锅中蒸发时产生的显热通量可忽略不计。该模型有助于对不对称互补关系进行新的概括,其中不对称参数b是针对广泛的气象条件进行分析预测的,初始测试在实测蒸发量和预测实际蒸发量之间产生了良好的一致性。

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  • 来源
    《Water resources research》 |2016年第1期|385-406|共22页
  • 作者单位

    ETH, Dept Environm Syst Sci, Zurich, Switzerland;

    Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT, Australia|Australian Natl Univ, Res Sch Biol, Canberra, ACT, Australia|Australian Res Council, Ctr Excellence Climate Syst Sci, Canberra, ACT, Australia;

    ETH, Dept Environm Syst Sci, Zurich, Switzerland;

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