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Fluxes and Gradients in the Convective Surface Layer and the Possible Role of Boundary-Layer Depth and Entrainment Flux

机译:对流表面层的通量和梯度以及边界层深度和夹带通量的可能作用

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摘要

We study the relation between fluxes and gradients in the very unstable surface layer by comparing recent proposals in the literature with the well-known Businger–Dyer functions. The recent proposals include results from large-eddy simulation (LES), which account for entrainment effects and effects of the boundary-layer depth. A comparison of the relationships is made with experimental data. The LES-based gradient functions show the impact of entrainment in the surface layer, but the scatter in the field data is too large to confirm this. Therefore this result is preliminary and future tests against new observations are recommended. It appears that the Businger–Dyer relationship behaves differently to the alternatives, and that it deviates from observations for large stability.
机译:通过将文献中的最新提议与著名的Businger-Dyer函数进行比较,我们研究了非常不稳定的表面层中通量与梯度之间的关系。最近的建议包括大涡模拟(LES)的结果,该结果考虑了夹带效应和边界层深度的效应。将这些关系与实验数据进行比较。基于LES的梯度函数显示了表层夹带的影响,但是场数据中的散布太大,无法确认这一点。因此,该结果是初步的,建议将来针对新的观察结果进行测试。看起来,Businger-Dyer关系的行为方式不同于其他选择,并且它偏离了较大稳定性的观察值。

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