首页> 外文期刊>Boundary-layer Meteorology >Temperature And Wind Velocity Oscillations Along a Gentle Slope DuringSea-Breeze Events
【24h】

Temperature And Wind Velocity Oscillations Along a Gentle Slope DuringSea-Breeze Events

机译:海风事件期间沿缓坡的温度和风速振荡

获取原文
获取原文并翻译 | 示例
           

摘要

The flow structure on a gentle slope at Vallon d'Ol in the northern suburbs of Marseille in southern France has been documented by means of surface wind and temperature measurements collected from 7 June to 14 July 2001 during the ESCOMPTE experiment. The analysis of the time series reveals temperature and wind speed oscillations during several nights (about 60--90 min oscillation period) and several days (about 120-180 min oscillation period) during the whole observing period. Oscillating katabatic winds have been reported in the literature from theoretical, experimental and numerical studies. In the present study, the dynamics of the observed oscillating katabatic winds are in good agreement with the theory.In contrast to katabatic winds, no daytime observations of oscillating anabatic upslope flows have ever been published to our knowledge, probably because of temperature inversion break-up that inhibits upslope winds. The present paper shows that cold air advection by a sea breeze generates a mesoscale horizontal temperature gradient, and hence baroclinicity in the atmosphere, which then allows low-frequency oscillations, similar to a katabatic flow. An expression for the oscillation period is derived that accounts for the contribution of the sea-breeze induced mesoscale horizontal temperature gradient. The theoretical prediction of the oscillation period is compared to the measurements, and good agreement is found. The statistical analysis of the wind flow at Vallon d'Ol shows a dominant north-easterly to easterly flow pattern for nighttime oscillations and a dominant south-westerly flow pattern for daytime oscillations. These results are consistent with published numerical simulation results that show that the air drains off the mountain along the maximum slope direction, which in the studied case is oriented south-west to north-east.
机译:在ESCOMPTE实验期间,通过2001年6月7日至7月14日收集的地表风和温度测量值,记录了法国南部马赛北郊Vallon d'Ol缓坡上的流动结构。对时间序列的分析揭示了在整个观测期间的几个晚上(大约60--90分钟的振荡周期)和几天(大约120-180分钟的振荡周期)的温度和风速振荡。从理论,实验和数值研究的文献中已经报道了振荡的方风。在本研究中,观测到的振荡方波的动力学与理论相吻合。与反向风相反,据我们所知,目前还没有白天的振荡绝热上坡流观测资料被公开,这可能是由于温度反转破裂所致。阻止向上倾斜的风。本文表明,海风对流的冷空气对流会产生中尺度的水平温度梯度,从而在大气中产生斜压,从而允许低频振荡,类似于倒流。得出了振荡周期的表达式,该表达式解释了海风引起的中尺度水平温度梯度的贡献。将振荡周期的理论预测值与测量值进行比较,可以找到很好的一致性。对Vallon d'Ol处风流的统计分析显示,夜间振荡主要为东北向东风模式,白天振荡主要为西南风模式。这些结果与已公开的数值模拟结果一致,该结果表明空气沿最大坡度方向从山中排出,在研究的情况下,该最大坡度方向为西南向东北。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号