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Turbulence Structures Over The Marginal Ice Zone Under Flow Parallel To The Ice Edge: Measurements And Parameterizations

机译:平行于冰边缘流动的边缘冰区上的湍流结构:测量和参数化

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摘要

Three aircraft-based studies of boundary-layer fronts (BLFs) werecarried out during the experiment KABEG in April 1997 near thesea-ice edge over the Davis Strait. The boundary-layer flow wasparallel to the ice edge and hence two independent turbulent regimescould develop in an identical synoptic framework, separated by thefrontal zone along the ice edge. The zone of strongest crosswindhorizontal gradients was typically 20 km wide, while the downstreamscale of the BLF was observed to be several hundreds of kilometres.For two of the three cases the investigation of turbulence structureswas possible and the results are given herein.Horizontal and vertical profiles of turbulent fluxes and other turbulentquantities are presented. A spectral analysis reveals the coexistence ofsmall-scale turbulence with roll motions. These roll motions can behidden or can be visible as cloud streets. The associated transportmechanisms are highly relevant for the choice of suitable averagingintervals for turbulent flux calculations and model validation.Parameterizations for the vertical velocity variance, countergradienttransport, sea surface roughness and eddy diffusivity are evaluatedand compared for this baroclinic strong-wind convective boundary-layerenvironment. Analogously, drag coefficients and bulk transfer coefficientsare derived from measurements.
机译:在1997年4月进行的KABEG实验期间,在戴维斯海峡上的海冰边缘附近进行了三项基于飞机的边界层前沿(BLF)研究。边界层流平行于冰边缘,因此两个独立的湍流区域应在相同的天气框架中发展,并被沿冰边缘的前缘区分开。水平风向梯度最大的区域通常为20 km宽,而BLF的下游尺度为数百公里。对于这三种情况中的两种,可以对湍流结构进行研究,并在此给出了结果。给出了湍流和其他湍流量的关系。频谱分析揭示了小规模湍流与侧倾运动并存。这些侧倾运动可以被隐藏,也可以在云街中看到。相关的输运机理与湍流通量计算和模型验证的合适平均间隔的选择高度相关。对斜压强风对流边界层环境的垂直速度变化,反梯度输运,海面粗糙度和涡流扩散率的参数化进行了评估和比较。类似地,阻力系数和整体传递系数是从测量得出的。

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