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Wake Response to an Ocean-Feedback Mechanism: Madeira Island Case Study

机译:对海洋反馈机制的唤醒反应:马德拉岛案例研究

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摘要

We focus on an island wake episode that occurred in the Madeira Archipelago region of the north-east Atlantic at . The Weather Research and Forecasting numerical model was used in a (one-way) downscaling mode, considering initial and boundary conditions from the European Centre for Medium-range Weather Forecasts system. The current literature emphasizes adiabatic effects on the dynamical aspects of atmospheric wakes. Changes in mountain height and consequently its relation to the atmospheric inversion layer should explain the shift in wake regimes, from a 'strong-wake' to 'weak-wake' scenario. Nevertheless, changes in sea-surface temperature variability in the lee of an island can induce similar regime shifts because of exposure to stronger solar radiation. Increase in evaporation contributes to the enhancement of convection and thus to the uplift of the stratified atmospheric layer above the critical height, with subsequent internal gravity wave activity.
机译:我们着眼于发生在东北大西洋东北部的马德拉群岛地区的海岛唤醒事件。考虑到欧洲中程天气预报中心的初始条件和边界条件,将“天气研究和预报”数值模型用于(单向)缩减模式。当前的文献强调绝热对大气尾流动力学方面的影响。山脉高度的变化及其与大气反转层的关系应能解释从“强醒”到“弱醒”情景的唤醒方式的转变。然而,由于暴露在更强的太阳辐射下,岛屿背风处海面温度变化的变化会引起类似的状态变化。蒸发的增加有助于对流的增强,从而有助于层状大气层在临界高度以上的抬升,并随之产生内部重力波活动。

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