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Analytical solution of the coupled 2-D turbulent heat and vapor transport equations and the complementary relationship of evaporation

机译:二维湍流传热和汽化耦合方程的解析解及蒸发的互补关系

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摘要

The existence of a symmetrical complementary relationship (CR) in evaporation has been hypothesized in the hydrologic literature but the conditions required have not been investigated in much detail. In this study it is shown that under near-neutral atmospheric conditions and a constant energy term at the evaporating surface, the analytical solution of the coupled turbulent diffusion equations of heat and vapor transport across a moisture discontinuity of the surface yields a symmetrical CR between the evaporation rate of the uniform drying land upwind of the discontinuity and the mean evaporation rate of the wet area provided, the latter has a proper fetch (i.e., along-the-wind extent). This fetch is a function of the air stability parameter and the assumed uniform surface roughness value, and it is in the order of a 100 m for a smooth surface under near-neutral atmospheric conditions. The analytically derived mean evaporation rates of such a smooth wet surface compare well, i.e., within 10%, to the Penman equation estimates, most frequently employed within the CR framework.
机译:在水文学中已经假设蒸发中存在对称互补关系(CR),但尚未对所需条件进行详细研究。在这项研究中表明,在接近中性的大气条件下以及在蒸发表面处具有恒定的能量项的情况下,热和蒸汽在表面水分不连续性上的耦合湍流扩散方程的解析解在两个表面之间产生了对称的CR。不连续处的均匀干燥区的蒸发速率和所提供的湿区的平均蒸发速率,湿区具有适当的提取率(即顺风程度)。该取值是空气稳定性参数和假定的均匀表面粗糙度值的函数,在接近中性的大气条件下,光滑表面的取值约为100 m。这种光滑的湿表面的分析得出的平均蒸发速率与CR框架中最常用的Penman方程估计值相比较很好,即在10%以内。

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