Spectral variability in high frequency in sea level and atmospheric pressure on Buenos Aires Coast, Argentina

Q2 Earth and Planetary Sciences
I. Pérez, Dragani Walter
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引用次数: 5

Abstract

There are some observational evidences which support that atmospheric gravity waves constitute an efficient forcing for meteorological tsunamis (meteotsunamis) along the coast of Buenos Aires, Argentina. Meteotsunamis and atmospheric gravity waves, which propagate simultaneously on the sea surface and the atmosphere, respectively, are typical examples of non-stationary geophysical signals. The variability of meteotsunamis and atmospheric gravity waves recorded at Mar del Plata was investigated in this paper. Results obtained in this work reinforce the idea of a cause (atmospheric gravity waves) effect (meteotsunami) relationship, because wavelet spectra obtained from both signals resulted quite similar. However, several very short episodes of mod-erate/low activity of atmospheric gravity waves were detected without detecting meteotsunami activity. On the other hand, it was found that atmospheric gravity wave spectral energy can appear in the wavelets as a single or multiple burst as relatively long and irregular events or as regular wave packets. Results obtained in this paper provide original spectral data about atmospheric gravity waves along the coast of Buenos Aires. This information is useful to be included in realistic numerical models in order to investigate the genesis of this complex atmosphere-ocean interaction.
阿根廷布宜诺斯艾利斯海岸海平面和大气压力高频谱变化
有一些观测证据支持大气重力波是阿根廷布宜诺斯艾利斯海岸气象海啸的有效推动力。Meteotsunamis和大气重力波分别在海面和大气上同时传播,是非平稳地球物理信号的典型例子。本文研究了在马德普拉塔记录的气象和大气重力波的变化。这项工作中获得的结果强化了原因(大气重力波)效应(meteotsunami)关系的概念,因为从两个信号中获得的小波谱结果非常相似。然而,在没有检测到meteotsunami活动的情况下,检测到了几次非常短暂的大气重力波活动。另一方面,研究发现,大气重力波谱能量可以在小波中以单个或多个突发的形式出现,作为相对较长和不规则的事件或规则的波包。本文获得的结果提供了布宜诺斯艾利斯沿岸大气重力波的原始光谱数据。这些信息有助于纳入现实的数值模型,以研究这种复杂的大气-海洋相互作用的成因。
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来源期刊
CiteScore
2.30
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Brazilian Journal of Oceanography covers the entire spectrum of disciplines within the science of oceanography, publishing articles dealing with the biological oceanography, physical oceanography, marine chemistry, sedimentology and geology, from coastal and estuarine waters out to the open sea. Emphasis is placed on inter-disciplinary process-oriented contributions. BJO also publishes issues dedicated to results of scientific meetings and of large inter-disciplinary studies or topical issues on specific subjects. The audience is composed by physical, chemical and biological oceanographers, marine sedimentologists, geologists and geochemists, marine biologists and ecologists. Papers sent to BJO must present results from original research and be written in english.
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