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首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Hydraulic Regimes of Flow over Mountains during Severe Downslope Windstorms: Novorossiysk Bora, Novaya Zemlya Bora, and Pevek Yuzhak
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Hydraulic Regimes of Flow over Mountains during Severe Downslope Windstorms: Novorossiysk Bora, Novaya Zemlya Bora, and Pevek Yuzhak

机译:严重下坡风暴期间山脉流量的液压制度:诺斯罗西斯克博拉,诺耶萨Zemlya Bora,以及Pevek Yuzhak

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摘要

Common features of the flow behavior over mountains within the hydraulic jump model are identified based on an analysis of 36 episodes of severe winds in the regions of Novorossiysk, Pevek, and Novaya Zemlya. In all these episodes, the incoming flow is characterized by a strong inversion layer at altitudes of 0.5-1.5 km and, in the case of bora, by a critical level in the wind profile in the middle troposphere, which creates conditions for a weakened dynamic interaction between the low-level air flowing over mountains and the upper layers of the atmosphere. The wind-speed increase on the lee slope is caused by the transition of the incoming flow from the subcritical to supercritical state. In this case, the velocity amplitude increases with increasing inversion intensity. Model estimates of wind-speed increase are in good agreement with observations at lee-side weather stations for episodes with a strong elevated inversion.
机译:基于Novorossiysk,Pevek和Novaya Zemlya地区的36个严重风发作的液压跳跃模型中山脉内山脉流动的共同特征。 在所有这些剧集中,进入流动的特征在于在海拔0.5-1.5 km的高度的强反转层,并且在硼的情况下,通过中间对流层中风曲线的临界水平,这为弱化的动态产生了条件 流过山脉的低级空气与大气层上层之间的相互作用。 Lee斜率上的风速增加是由传入流过来自亚临界到超临界状态的转变引起的。 在这种情况下,速度幅度随着反转强度的增加而增加。 风速增加的模型估计与李侧气象站的观察结果良好,具有强大的升高反转。

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