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Mountain-Wave-Like Spurious Waves Associated with Simulated Cold Fronts due to Inconsistencies between Horizontal and Vertical Resolutions

机译:由于水平和垂直分辨率之间的不一致,与模拟冷锋相关的类似山浪的杂散波

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A newly developed global nonhydrostatic model is used for life cycle experiments (LCEs) of baroclinic waves, and the resolution dependency of frontal structures is examined. LCEs are integrated for 12 days with horizontal grid intervals ranging from 223 to 3.5 km in a global domain. In general, fronts become sharper and corresponding vertical flow strengthens as horizontal resolution increases. However, if the ratio of vertical and horizontal grid intervals is sufficiently small compared to the frontal slope s, the overall frontal structure remains unchanged. In contrast, when the ratio of horizontal and vertical grid intervals exceeds 25 - 4s, spurious gravity waves are generated at the cold front. A linear model for mountain waves quantitatively explains the mechanism of the spurious waves. The distribution of the basic wind is the major factor that determines wave amplitude and propagation. The spurious waves propagate up to a critical level at which the basic wind speed normal to the front is equal to the propagation speed of the front. Results from the linear model suggest that an effective way to eliminate spurious waves is to choose a stretched grid with a smaller vertical grid interval in lower layers where strong horizontal winds exist.
机译:新开发的全局非静水模型用于斜压波的生命周期实验(LCE),并检查了额叶结构的分辨率依赖性。 LCE在全球范围内整合了12天,水平网格间隔范围为223至3.5 km。通常,随着水平分辨率的提高,前沿会变得更锐利,相应的垂直流也会增强。然而,如果垂直和水平网格间隔的比率与额坡s相比足够小,则总体额叶结构保持不变。相反,当水平和垂直网格间隔之比超过25-4s时,在冷锋处会产生伪重力波。山波的线性模型定量地解释了伪波的机理。基本风的分布是决定波幅和传播的主要因素。杂散波传播到临界水平,在该临界水平上,垂直于正面的基本风速等于正面的传播速度。线性模型的结果表明,消除杂散波的有效方法是在存在强水平风的较低层中选择垂直网格间隔较小的拉伸网格。

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