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A Convective Line with Leading Stratiform Precipitation from BAMEX

机译:来自BAMEX的具有领先层状降水的对流线

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On 31 May 2003, a front-fed convective line with leading stratiform precipitation (FFLS) was observed during the Bow Echo and Mesoscale Convective Vortex Experiment (BAMEX). The high-resolution BAMEX measurements provided one of the first opportunities to thoroughly observe the characteristics of an FFLS system. The 31 May system had an overturning updraft during its early stages, and produced leading stratiform precipitation. As the system matured, a jump updraft developed and the system began to produce trailing stratiform precipitation. It appears that this transition was facilitated by a local decrease in the low-level line-perpendicular vertical wind shear over time, as well as an increase in the surface cold pool's strength. The BAMEX data further help to address the question of how FFLS systems can be long lived when their inflow passes through the line-leading precipitation: preline soundings suggest a destabi-lization mechanism resulting from the vertical profile of cooling within the leading stratiform precipitation. This destabilization also helps to explain the 31 May convective system's persistence in an environment with very low CAPE.
机译:2003年5月31日,在弓回波和中尺度对流涡旋实验(BAMEX)中观察到前馈对流线具有领先的层状降水(FFLS)。高分辨率的BAMEX测量提供了彻底观察FFLS系统特性的第一个机会。 5月31日的系统在早期阶段就发生了倾覆上升,并产生了领先的层状降水。随着系统的成熟,出现了跳跃上升气流,系统开始产生尾随的层状降水。似乎这种转变是由于低水平线垂直垂直风切变随时间的局部减少以及表面冷池强度的增加而促进的。 BAMEX数据进一步帮助解决了FFLS系统的流入流经线路领先的降水时如何长寿的问题:前线测深表明,稳定的机制是由领先的层状降水内的垂直冷却引起的。这种不稳定也有助于解释5月31日对流系统在CAPE非常低的环境中的持久性。

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