首页> 外文期刊>Electronic Journal of Severe Storms Metereology >Topographic Sensitivity of the Snake River Plain Convergence Zone of Eastern Idaho. Part II: Numerical Simulations
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Topographic Sensitivity of the Snake River Plain Convergence Zone of Eastern Idaho. Part II: Numerical Simulations

机译:爱达荷州东部蛇河平原汇聚区的地形敏感性。第二部分:数值模拟

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The Snake River Plain Convergence Zone (SPCZ) is a mesoscale topographic weather system in the planetary boundary layer that occasionally forms in a post-cold-frontal environment during the cold season in eastern Idaho.? Part I of this study investigated persistent and locally heavy topographic snowfall associated with such a zone on 26 November 2005.? Multiple snowbands formed in the presence of conditional, convective, and inertial instabilities.? In Part II, nested grid high-resolution numerical simulations of the WRF-ARW model are used to investigate the structure and evolution of the SPCZ with two different terrain grid scales.? In a smoothed topography with a coarsely resolved tributary valley system upstream of the broad parabolic-shaped Snake Plain, the model does not simulate a lee convergence band and vorticity dipole.? These features are evident in the observations and control simulation.? The smoothed run also misses snowfall associated with windward convergence and stable upslope flow in the Pocatello-Inkom area.? Nevertheless, both model runs depict topographically-generated convective storms and potential vorticity anomalies in the plain.
机译:蛇河平原汇聚区(SPCZ)是行星边界层中的中尺度地形气象系统,在爱达荷州东部的寒冷季节中,有时在冷锋后环境中形成。这项研究的第一部分调查了2005年11月26日与该区域相关的持续和局部大面积降雪。存在条件,对流和惯性不稳定性时会形成多个雪带。在第二部分中,使用WRF-ARW模型的嵌套网格高分辨率数值模拟来研究具有两个不同地形网格比例的SPCZ的结构和演化。在平滑的地形中,在宽的抛物线形Snake Plain上游有一个粗糙的支流山谷系统,该模型没有模拟lee收敛带和涡度偶极子。这些特征在观察和控制仿真中很明显。平稳的运行还错过了Pocatello-Inkom地区与迎风收敛和稳定的上坡流相关的降雪。尽管如此,这两个模型都描述了地形产生的对流风暴和平原上潜在的涡度异常。

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