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DEFORMATION FRONTOGENESIS - OBSERVATION AND THEORY

机译:变形成因-观察与理论

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A low-level deformation frontogenesis event that occurred during the Stormscale Operational and Research Meteorology-Fronts Experiment Systems Test (STORM-FEST) held program is analyzed in the context of semigeostrophic theory. The observed evolution and vertical structure of the potential temperature and alongfront wind fields are compared to that predicted by both numerical and analytical solutions of the semigeostrophic equations initialized at the onset of the deformation frontogenesis. The model solutions provide relatively accurate predictions of the surface potential temperature distribution 5 h later, when the frontogenesis ended. The point along the front with the steepest potential temperature gradient is observed to move closer to the point with the highest relative vorticity by an amount that is in rough agreement with the model prediction. Vertical profiles of potential temperature from soundings show a nearly mixed layer below similar to 400 m that cannot be predicted by the inviscid solutions, but there is good agreement with inviscid theory above this level. The observed profiles of alongfront wind are characterized by a low-level jet with maximum speed at the level of the inversion, and the vertical shear below the jet maximum is opposite that predicted by the thermal wind equation. The semigeostrophic model does appear to depict this frontogenesis event in the upper layer, while the lower layer is dominated by surface drag and shear-induced turbulent mixing. [References: 8]
机译:在半地转理论的背景下,对在“暴风雨级运行和研究气象-前沿实验系统测试”(STORM-FEST)举行的计划期间发生的低水平形变前缘事件进行了分析。将观测到的潜在温度和沿前风场的演化和垂直结构与通过变形前兆开始时初始化的半地转方程的数值和解析解所预测的结果进行比较。当前生结束时,模型解可以在5小时后提供相对准确的表面势温度分布预测。观察到具有最陡的潜在温度梯度的沿前的点移向具有最高相对涡度的点的距离与模型预测大致一致。来自测深的潜在温度的垂直剖面显示,在近似400 m以下的层几乎是混合层,无粘性解决方案无法预测,但在该水平以上与无粘性理论有很好的一致性。观测到的沿风的剖面特征是低水平射流,其反演水平上具有最大速度,而射流最大以下的垂直切变与热风方程所预测的相反。半地转模型似乎确实在上层描述了这种前生事件,而下层则以表面阻力和剪切诱导的湍流混合为主导。 [参考:8]

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