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Pseudovertical Temperature Profiles Give Insight into Winter Evolution of the Atmospheric Boundary Layer over the McMurdo Dry Valleys of Antarctica

机译:伪温度剖面使人们深入了解南极麦克默多干旱谷上大气边界层的冬季演变

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摘要

Measuring routine vertical profiles of atmospheric temperature is critical in understanding stability and the dynamics of the boundary layer. Routine monitoring in remote areas such as the McMurdo Dry Valleys (MDV) of Antarctica is logistically difficult and expensive. Pseudovertical profiles that were derived from a network of inexpensive ground temperature sensors planted on valley sidewalls (up to 330 m above valley floor), together with data from a weather station and a numerical weather prediction model, provided a long-term climatological description of the evolution of the winter boundary layer over the MDV. In winter, persistent valley cold pools (VCPs) were common, lasting up to 2 weeks. The VCPs were eroded by warm-air advection from aloft associated with strong winds, increasing the temperature of the valley by as much as 25 K. Pseudovertical datasets as described here can be used for model validation.
机译:测量大气温度的常规垂直剖面对于了解边界层的稳定性和动力学至关重要。在偏远地区,如南极的麦克默多干旱谷(MDV)进行例行监视在逻辑上既困难又昂贵。假剖面剖面是从种植在山谷侧壁(最高到山谷地面以上330 m)上的廉价地温传感器网络中获得的,再加上来自气象站的数据和数值天气预报模型,提供了该地区的长期气候描述。 MDV上冬季边界层的演变。在冬季,持续的山谷冷池(VCP)很常见,可持续长达2周。 VCP被与强风有关的高空对流侵蚀,使山谷温度升高了25K。如此处所述的伪数据集可用于模型验证。

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