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A Review of Cold Fronts with Prefrontal Troughs and Wind Shifts

机译:前额槽与风移的冷锋回顾

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The conceptual model of a classical surface-based cold front consists of a sharp temperature decrease coincident with a pressure trough and a distinct wind shift at the surface. Many cold fronts, however, do not conform to this model—time series at a single surface station may possess a pressure trough and wind shift in the warm air preceding the cold front (hereafter called a prefrontal trough and prefrontal wind shift, respectively). Although many authors have recognized these prefrontal features previously, a review of the responsible mechanisms has not been performed to date. This paper presents such a review. Ten disparate mechanisms with different frontal structures have been identified from the previous literature. These mechanisms include those external to the front (i.e., those not directly associated with the cold front itself): synoptic-scale forcing, interaction with lee troughs/drylines, interaction with fronts in the mid- and upper troposphere, and frontogenesis associated with inhomogeneities in the prefrontal air. Mechanisms internal to the front (i.e., those directly associated with the structure and dynamics of the front) include the following: surface friction, frontogenesis acting on alongfront temperature gradients, moist processes, descent of air, ascent of air at the front, and generation of prefrontal bores/gravity waves. Given the gaps in our knowledge of the structure, evolution, and dynamics of surface cold fronts, this paper closes with an admonition for improving the links between theory, observations, and modeling to advance understanding and develop better conceptual models of cold fronts, with the goal of improving both scientific understanding and operational forecasting.
机译:经典的基于表面的冷锋的概念模型由温度急剧下降,压力波谷和表面明显的风移组成。但是,许多冷锋并不符合该模型-在单个地面站的时间序列在冷锋之前的暖空气中可能具有压力波谷和风变(以下分别称为前额波谷和前额风变)。尽管许多作者以前已经认识到这些前额叶特征,但迄今为止尚未对负责任的机制进行过审查。本文提出了这样的评论。从先前的文献中已经鉴定出十种具有不同额叶结构的不同机制。这些机制包括锋面外部的那些(即那些与冷锋本身不直接相关的机制):天气尺度强迫,与风谷/干线的相互作用,与对流层中层和高层对流层的相互作用以及与不均匀性相关的锋生。在前额空中。锋面内部的机制(即那些与锋面的结构和动力学直接相关的机制)包括以下内容:表面摩擦,作用于锋面温度梯度的锋面生成,潮湿过程,空气下降,锋面空气上升以及生成前额孔/重力波。鉴于我们对地表冷锋的结构,演化和动力学的了解存在差距,本文最后提出一条告诫,以期改善理论,观测和建模之间的联系,从而增进对冷锋的认识并开发更好的概念模型。提高科学认识和运营预测的目标。

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