冷锋对纽约沃特金斯格伦峡谷复杂地形内微尺度大气条件的影响

IF 1.1 4区 地球科学 Q4 ENVIRONMENTAL SCIENCES
Chad W. Hecht, Neil F Laird
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引用次数: 0

摘要

本文研究了天气尺度冷锋对纽约沃特金斯峡谷复杂地形内小气候条件的影响。9月和11月,在峡谷内(2个站)和峡谷外(1个站)的3个小气候站采集了温度和露点温度。在为期八周的测量期间,共有九次冷锋在一天中的不同时间(即白天、夜间和过渡时间)经过峡谷。在前额叶时期,峡谷内的两个地点在温度和水分含量方面相似:与峡谷外的地点相比,温度更低,水分含量更高。在很大比例的时间内,峡谷边缘高度存在一个稳定的逆温层,导致有限的混合和峡谷内外大气的分离。随着冷锋的通过,纽约中部地区出现了一个强大的转变,形成了一个大范围的冷气团,并引入了不太稳定的条件,使得沃特金斯格伦峡谷复杂地形内的峡谷外空气得以侵入和混合,尤其是在夜间和过渡冷锋期间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of cold fronts on microscale atmospheric conditions within the complex terrain of Watkins Glen Gorge, New York
ABSTRACT This study investigates the influence of synoptic-scale cold fronts on microclimatic conditions within the complex terrain of Watkins Glen gorge, New York. Temperature and dewpoint temperature measurements were collected by three microclimate stations both within (two stations) and just outside (one station) of the gorge during the months of September and November. A total of nine cold fronts passed over the gorge at different times of day (i.e., daytime, nighttime, and transitional) during the eight-week measurement period. During the prefrontal time periods, the two sites within the gorge were similar in both temperature and moisture content: colder and greater moisture content compared to the outside-gorge site. A stable inversion layer was present at the rim height of the gorge a large percentage of time resulting in limited mixing and a separation of the outside-gorge and inside-gorge atmospheres. Following the passage of cold fronts, there was a robust transition to a large-scale colder atmospheric air mass across the central New York region and introduction of less stable conditions that allowed intrusion and mixing of outside-gorge air within the complex terrain of Watkins Glen gorge, especially during nighttime and transitional cold fronts.
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来源期刊
Physical Geography
Physical Geography 地学-地球科学综合
CiteScore
3.60
自引率
0.00%
发文量
18
审稿时长
6 months
期刊介绍: Physical Geography disseminates significant research in the environmental sciences, including research that integrates environmental processes and human activities. It publishes original papers devoted to research in climatology, geomorphology, hydrology, biogeography, soil science, human-environment interactions, and research methods in physical geography, and welcomes original contributions on topics at the intersection of two or more of these categories.
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