首页> 外文期刊>Quarterly Journal of the Royal Meteorological Society >Nocturnal low-level jet and 'atmospheric streams' over the rain shadow region of Indian Western Ghats
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Nocturnal low-level jet and 'atmospheric streams' over the rain shadow region of Indian Western Ghats

机译:夜间低空急流和印度西部高止山脉雨影区上空的“大气流”

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摘要

Spatial and temporal characteristics of a nocturnal low-level jet (LLJ) on the east side of the Western Ghat mountain range over India's west coast and processes leading to the formation of the jet are discussed. The boundary-layer jet has a regionalscale extent, as revealed by high-resolution Advanced Research Weather Research and Forecasting (ARW) model simulations, and contributes to the formation of 'atmospheric streams' of water vapor over the selected land regions. Simulations indicate that the formation of LLJ is mainly attributed to the baroclinicity of the valley atmosphere due to the gently rolling terrain, which is assisted by the persistence of an unstable residual layer above the developing stable boundary layer in the valley and cooling over the slopes. Prior to the formation of LLJ, the boundary layer is dominated by deep roll circulations. The LLJ followed a gust front zone associated with a mountain wave. The low-level flow below the jet is decoupled from the upper-level flow as aresult of strong vorticity below the jet and suppression of turbulence at the jet core. A conceptual model for the boundary layer interactions, dynamics of the mountain wave, LLJ, etc. are proposed for Western Ghat region.
机译:讨论了印度西海岸西高止山脉东侧夜间低空急流(LLJ)的时空特征及其形成过程。高分辨率高级研究天气研究和预报(ARW)模型模拟​​显示,边界层射流具有区域尺度的范围,并且有助于在选定的陆地区域形成水蒸气的“大气流”。模拟表明,LLJ的形成主要归因于平缓的地形造成的山谷大气的斜压,这是由山谷中稳定边界层上方不稳定的残余层的持续存在和斜坡上的冷却所辅助的。在LLJ形成之前,边界层主要由深层辊环旋控制。 LLJ跟随与山浪相关的阵风锋区。由于射流下方的强涡流和抑制射流核心的湍流,射流下方的低水平流与高层流分离。提出了西高止山脉边界层相互作用,山波动力学,LLJ等的概念模型。

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