Bore-ing into Nocturnal Convection

Bore-ing into Nocturnal Convection
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DOI:
10.1175/bams-d-17-0250.1
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发表时间:
2019-06
影响因子:
8
通讯作者:
K. Haghi;B. Geerts;H. Chipilski;Aaron Johnson;Samuel K. Degelia;David A. Imy;D. Parsons;R. Adams-Selin;D. Turner;Xuguang Wang
K. Haghi;B. Geerts;H. Chipilski;Aaron Johnson;Samuel K. Degelia;David A. Imy;D. Parsons;R. Adams-Selin;D. Turner;Xuguang Wang
中科院分区:
地球科学1区
文献类型:
--
作者:
K. Haghi;B. Geerts;H. Chipilski;Aaron Johnson;Samuel K. Degelia;David A. Imy;D. Parsons;R. Adams-Selin;D. Turner;Xuguang Wang

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最近出现了一波对大气孔的关注,以了解它们是如何演变以及在夜间引发和维持对流的。这一激增归因于2015年平原夜间高空对流(山核桃)实地活动期间收集的数据。山核桃项目的一个突出方面是,它的重点是使用多个观测平台来更好地了解侵入稳定边界层并导致大气孔发展的对流流出边界。这篇文章的目的有三个:1)教育读者关于钻孔研究的当前和未来的焦点,2)介绍山核桃观测将如何促进上述研究,以及3)刺激跨其他密切相关领域的多学科合作努力,努力推动夜间对流预测的局限性。
There has been a recent wave of attention given to atmospheric bores in order to understand how they evolve and initiate and maintain convection during the night. This surge is attributable to data collected during the 2015 Plains Elevated Convection at Night (PECAN) field campaign. A salient aspect of the PECAN project is its focus on using multiple observational platforms to better understand convective outflow boundaries that intrude into the stable boundary layer and induce the development of atmospheric bores. The intent of this article is threefold: 1) to educate the reader on current and future foci of bore research, 2) to present how PECAN observations will facilitate aforementioned research, and 3) to stimulate multidisciplinary collaborative efforts across other closely related fields in an effort to push the limitations of prediction of nocturnal convection.