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Simulating Sundowner Winds in Coastal Santa Barbara: Model Validation and Sensitivity

机译:模拟沿海圣塔芭芭拉的日落风:模型验证和敏感性

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摘要

This study investigates the influence of planetary boundary layer (PBL) schemes and land surface models (LSMs) on the performance of the Weather Research & Forecasting model in simulating the development of downslope windstorms in the lee of the Santa Ynez Mountains in Santa Barbara, California (known as Sundowner winds). Using surface stations, a vertical wind profiler, and a multi-physics ensemble approach, we found that most of the wind speed biases are controlled by the roughness length z 0 , and so by the choice of LSM. While timing characteristics of Sundowners are insensitive to both LSM and PBL schemes, a clear sensitivity in the horizontal extent of strong surface winds is found for both PBL parameterization and z 0 , which are related to patterns of self-induced wave-breaking near the mountaintop, and the erosion of the marine layer. These results suggest that LSMs with relatively high values of z 0 , and TKE-based or hybrid PBL schemes adequately simulate downslope windstorms in the lee of mountain ranges, specifically in areas where downslope windstorms interact with the marine boundary layer with stably stratified characteristics.
机译:这项研究调查了行星边界层(PBL)方案和陆地表面模型(LSMs)对天气研究与预报模型在模拟加利福尼亚州圣塔芭芭拉的圣伊内斯山脉背坡暴风雪发展过程中的性能的影响(称为日落风)。通过使用地面站,垂直风廓线仪和多物理场合奏方法,我们发现大多数风速偏差由粗糙度长度z 0以及LSM的选择控制。虽然Sundowners的定时特性对LSM和PBL方案均不敏感,但对于PBL参数化和z 0,在强表面风的水平范围内均具有明显的灵敏度,这与山顶附近自感波的破坏模式有关,以及海洋层的侵蚀。这些结果表明,z 0值相对较高的LSM和基于TKE或混合PBL的方案可以充分模拟山脉下风的下坡风暴,特别是在下坡风暴与海洋边界层相互作用且具有稳定分层特征的区域。

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